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Fabrication and optical properties of Y2O3: Eu3+ nanofibers prepared by electrospinning
Guoping Dong, Yingzhi Chi, Xiudi Xiao, Xiaofeng Liu, Bin Qian, Zhijun Ma, E Wu, Heping Zeng, Danping Chen, and Jianrong Qiu »View Author Affiliations
1Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Qinghe Road 390, Jiading District, Shanghai 201800, >PR China; and Graduate School of the Chinese Academy of Sciences, Beijing 100039, PR China
2State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai, 200062, PR China
3State Key Laboratory of Silicon Materials, Zhejiang University, Hangzhou, Zhejiang 310027, PR China
*Corresponding author: qjr@zju.edu.cn
Optics Express, Vol. 17, Issue 25, pp. 22514-22519 (2009)
http://dx.doi.org/10.1364/OE.17.022514
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Abstract
Y2O3: Eu3+ nanofibers with the average diameter of ~300 nm were in situ fabricated by electrospinning. X-ray diffraction (XRD) pattern confirmed that the Y2O3: Eu3+ nanofibers were composed of pure body-centered cubic (bcc) Y2O3 phase. High-resolution transmission electron microscopy (HRTEM) results indicated that Y2O3: Eu3+ nanofibers were constituted of nonspherical crystalline grains, and these crystalline grains were orderly arranged along the axial direction of single nanofiber. These Y2O3: Eu3+ nanofibers showed a partially polarized photoluminescence (PL). The arrangement of crystalline grains and the mismatch of dielectric constant between Y2O3: Eu3+ nanofiber and its environment probably contributed together to the polarized PL from Y2O3: Eu3+ nanofiber.
© 2009 OSA
OCIS Codes
(160.2540) Materials : Fluorescent and luminescent materials
(160.4760) Materials : Optical properties
(160.5690) Materials : Rare-earth-doped materials
(300.6280) Spectroscopy : Spectroscopy, fluorescence and luminescence
ToC Category:
Materials
History
Original Manuscript: July 31, 2009
Revised Manuscript: October 29, 2009
Manuscript Accepted: October 29, 2009
Published: November 24, 2009
Citation
Guoping Dong, Yingzhi Chi, Xiudi Xiao, Xiaofeng Liu, Bin Qian, Zhijun Ma, E Wu, Heping Zeng, Danping Chen, and Jianrong Qiu, "Fabrication and optical properties of Y2O3: Eu3+ nanofibers prepared by electrospinning," Opt. Express 17, 22514-22519 (2009)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-17-25-22514
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References
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- L. V. Titova, T. B. Hoang, H. E. Jackson, L. M. Smith, J. M. Yarrison-Rice, Y. Kim, H. J. Joyce, H. H. Tan, and C. Jagadish, “Temperature dependence of photoluminescence from single core-shell GaAs-AlGaAs nanowires,” Appl. Phys. Lett. 89(17), 173126 (2006). [CrossRef]
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- L. Wang, H. Jia, X. Yu, Y. Zhang, P. Du, Z. Xi, and D. Jin, “Optimization of the photoluminescence properties of electrodeposited Y2O3:Eu3+ thin-film phosphors,” Electrochem. Solid-State Lett. 12(8), E20–E22 (2009). [CrossRef]
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- S. Kan, T. Mokari, E. Rothenberg, and U. Banin, “Synthesis and size-dependent properties of zinc-blende semiconductor quantum rods,” Nat. Mater. 2(3), 155–158 (2003). [CrossRef] [PubMed]
- N. Tessler, V. Medvedev, M. Kazes, S. H. Kan, and U. Banin, “Efficient near-infrared polymer nanocrystal light-emitting diodes,” Science 295(5559), 1506–1508 (2002). [CrossRef] [PubMed]
- N. Tessler, V. Medvedev, M. Kazes, S. H. Kan, and U. Banin, “Efficient near-infrared polymer nanocrystal light-emitting diodes,” Science 295(5559), 1506–1508 (2002). [CrossRef] [PubMed]
- M. Kazes, D. Y. Lewis, Y. Ebenstein, T. Mokari, and U. Banin, “Lasing from semiconductor quantum rods in a cylindrical microcavity,” Adv. Mater. 14(4), 317–321 (2002). [CrossRef]
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
- L. V. Titova, T. B. Hoang, H. E. Jackson, L. M. Smith, J. M. Yarrison-Rice, Y. Kim, H. J. Joyce, H. H. Tan, and C. Jagadish, “Temperature dependence of photoluminescence from single core-shell GaAs-AlGaAs nanowires,” Appl. Phys. Lett. 89(17), 173126 (2006). [CrossRef]
- K. Y. Ko, Y. K. Lee, H. K. Park, Y. C. Kim, and Y. R. Do, “The variation of the enhanced photoluminescence efficiency of Y2O3:Eu3+ films with the thickness to the photonic crystal layer,” Opt. Express 16(8), 5689–5696 (2008), http://www.opticsinfobase.org/oe/viewmedia.cfm?URI=oe-16-8-5689&seq=0 . [CrossRef] [PubMed]
- K. Y. Ko, Y. K. Lee, H. K. Park, Y. C. Kim, and Y. R. Do, “The variation of the enhanced photoluminescence efficiency of Y2O3:Eu3+ films with the thickness to the photonic crystal layer,” Opt. Express 16(8), 5689–5696 (2008), http://www.opticsinfobase.org/oe/viewmedia.cfm?URI=oe-16-8-5689&seq=0 . [CrossRef] [PubMed]
- J. Yang, Z. W. Quan, D. Y. Kong, X. M. Liu, and J. Lin, “Y2O3: Eu3+ microspheres: solvothermal synthesis and luminescence properties,” Cryst. Growth Des. 7(4), 730–735 (2007). [CrossRef]
- K. Y. Ko, Y. K. Lee, H. K. Park, Y. C. Kim, and Y. R. Do, “The variation of the enhanced photoluminescence efficiency of Y2O3:Eu3+ films with the thickness to the photonic crystal layer,” Opt. Express 16(8), 5689–5696 (2008), http://www.opticsinfobase.org/oe/viewmedia.cfm?URI=oe-16-8-5689&seq=0 . [CrossRef] [PubMed]
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
- M. Kazes, D. Y. Lewis, Y. Ebenstein, T. Mokari, and U. Banin, “Lasing from semiconductor quantum rods in a cylindrical microcavity,” Adv. Mater. 14(4), 317–321 (2002). [CrossRef]
- Z. Y. Hou, P. P. Yang, C. X. Li, L. L. Wang, H. Z. Lian, Z. W. Quan, and J. Lin, “Preparation and luminescence properties of YVO4:Ln and Y(V, P)O4:Ln (Ln=Eu3+, Sm3+, Dy3+) nanofibers and microbelts by sol-gel/electrospinning process,” Chem. Mater. 20(21), 6686–6696 (2008). [CrossRef]
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- Z. Y. Hou, P. P. Yang, C. X. Li, L. L. Wang, H. Z. Lian, Z. W. Quan, and J. Lin, “Preparation and luminescence properties of YVO4:Ln and Y(V, P)O4:Ln (Ln=Eu3+, Sm3+, Dy3+) nanofibers and microbelts by sol-gel/electrospinning process,” Chem. Mater. 20(21), 6686–6696 (2008). [CrossRef]
- J. F. Wang, M. S. Gudiksen, X. F. Duan, Y. Cui, and C. M. Lieber, “Highly polarized photoluminescence and photodetection from single indium phosphide nanowires,” Science 293(5534), 1455–1457 (2001). [CrossRef] [PubMed]
- M. Bashouti, W. Salalha, M. Brumer, E. Zussman, and E. Lifshitz, “Alignment of colloidal CdS nanowires embedded in polymer nanofibers by electrospinning,” ChemPhysChem 7(1), 102–106 (2006). [CrossRef] [PubMed]
- Z. Y. Hou, P. P. Yang, C. X. Li, L. L. Wang, H. Z. Lian, Z. W. Quan, and J. Lin, “Preparation and luminescence properties of YVO4:Ln and Y(V, P)O4:Ln (Ln=Eu3+, Sm3+, Dy3+) nanofibers and microbelts by sol-gel/electrospinning process,” Chem. Mater. 20(21), 6686–6696 (2008). [CrossRef]
- J. Yang, Z. W. Quan, D. Y. Kong, X. M. Liu, and J. Lin, “Y2O3: Eu3+ microspheres: solvothermal synthesis and luminescence properties,” Cryst. Growth Des. 7(4), 730–735 (2007). [CrossRef]
- G. P. Dong, X. F. Liu, X. D. Xiao, B. Qian, J. Ruan, S. Ye, H. C. Yang, D. P. Chen, and J. R. Qiu, “Photoluminescence of Ag nanoparticle embedded Tb3+/Ce3+ codoped NaYF4/PVP nanofibers prepared by electrospinning,” Nanotechnology 20(5), 055707 (2009). [CrossRef] [PubMed]
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
- J. Yang, Z. W. Quan, D. Y. Kong, X. M. Liu, and J. Lin, “Y2O3: Eu3+ microspheres: solvothermal synthesis and luminescence properties,” Cryst. Growth Des. 7(4), 730–735 (2007). [CrossRef]
- X. M. Sui, C. L. Shao, and Y. C. Liu, “White-light emission of polyvinyl alcohol/ZnO hybrid nanofibers prepared by electrospinning,” Appl. Phys. Lett. 87(11), 113115 (2005). [CrossRef]
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
- C. R. L. P. N. Jeukens, P. Jonkheijm, F. J. P. Wijnen, J. C. Gielen, P. C. M. Christianen, A. P. H. J. Schenning, E. W. Meijer, and J. C. Maan, “Polarized emission of individual self-assembled oligo(p-phenylenevinylene)-based nanofibers on a solid support,” J. Am. Chem. Soc. 127(23), 8280–8281 (2005). [CrossRef] [PubMed]
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- D. O’Carroll and G. Redmond, “Highly anisotropic luminescence from poly (9,9-dioctylfluorene) nanowires doped with orientationally ordered #-phase polymer chains,” Chem. Mater. 20(20), 6501–6508 (2008). [CrossRef]
- H. W. Song, H. Q. Yu, G. H. Pan, X. Bai, B. Dong, X. T. Zhang, and S. K. Park, “Electrospinning preparation, structure, and photoluminescence properties of YBO3:Eu3+ nanotubes and nanowires,” Chem. Mater. 20(14), 4762–4767 (2008). [CrossRef]
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
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- H. W. Song, H. Q. Yu, G. H. Pan, X. Bai, B. Dong, X. T. Zhang, and S. K. Park, “Electrospinning preparation, structure, and photoluminescence properties of YBO3:Eu3+ nanotubes and nanowires,” Chem. Mater. 20(14), 4762–4767 (2008). [CrossRef]
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
- G. P. Dong, X. F. Liu, X. D. Xiao, B. Qian, J. Ruan, S. Ye, H. C. Yang, D. P. Chen, and J. R. Qiu, “Photoluminescence of Ag nanoparticle embedded Tb3+/Ce3+ codoped NaYF4/PVP nanofibers prepared by electrospinning,” Nanotechnology 20(5), 055707 (2009). [CrossRef] [PubMed]
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
- G. P. Dong, X. F. Liu, X. D. Xiao, B. Qian, J. Ruan, S. Ye, H. C. Yang, D. P. Chen, and J. R. Qiu, “Photoluminescence of Ag nanoparticle embedded Tb3+/Ce3+ codoped NaYF4/PVP nanofibers prepared by electrospinning,” Nanotechnology 20(5), 055707 (2009). [CrossRef] [PubMed]
- Z. Y. Hou, P. P. Yang, C. X. Li, L. L. Wang, H. Z. Lian, Z. W. Quan, and J. Lin, “Preparation and luminescence properties of YVO4:Ln and Y(V, P)O4:Ln (Ln=Eu3+, Sm3+, Dy3+) nanofibers and microbelts by sol-gel/electrospinning process,” Chem. Mater. 20(21), 6686–6696 (2008). [CrossRef]
- J. Yang, Z. W. Quan, D. Y. Kong, X. M. Liu, and J. Lin, “Y2O3: Eu3+ microspheres: solvothermal synthesis and luminescence properties,” Cryst. Growth Des. 7(4), 730–735 (2007). [CrossRef]
- D. O’Carroll and G. Redmond, “Highly anisotropic luminescence from poly (9,9-dioctylfluorene) nanowires doped with orientationally ordered #-phase polymer chains,” Chem. Mater. 20(20), 6501–6508 (2008). [CrossRef]
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
- S. Kan, T. Mokari, E. Rothenberg, and U. Banin, “Synthesis and size-dependent properties of zinc-blende semiconductor quantum rods,” Nat. Mater. 2(3), 155–158 (2003). [CrossRef] [PubMed]
- G. P. Dong, X. F. Liu, X. D. Xiao, B. Qian, J. Ruan, S. Ye, H. C. Yang, D. P. Chen, and J. R. Qiu, “Photoluminescence of Ag nanoparticle embedded Tb3+/Ce3+ codoped NaYF4/PVP nanofibers prepared by electrospinning,” Nanotechnology 20(5), 055707 (2009). [CrossRef] [PubMed]
- M. Bashouti, W. Salalha, M. Brumer, E. Zussman, and E. Lifshitz, “Alignment of colloidal CdS nanowires embedded in polymer nanofibers by electrospinning,” ChemPhysChem 7(1), 102–106 (2006). [CrossRef] [PubMed]
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
- M. Bognitzki, W. Czado, T. Frese, A. Schaper, M. Hellwig, M. Steinhart, A. Greiner, and J. H. Wendorff, “Nanostructured fibers via electrospinning,” Adv. Mater. 13(1), 70–72 (2001). [CrossRef]
- C. R. L. P. N. Jeukens, P. Jonkheijm, F. J. P. Wijnen, J. C. Gielen, P. C. M. Christianen, A. P. H. J. Schenning, E. W. Meijer, and J. C. Maan, “Polarized emission of individual self-assembled oligo(p-phenylenevinylene)-based nanofibers on a solid support,” J. Am. Chem. Soc. 127(23), 8280–8281 (2005). [CrossRef] [PubMed]
- X. M. Sui, C. L. Shao, and Y. C. Liu, “White-light emission of polyvinyl alcohol/ZnO hybrid nanofibers prepared by electrospinning,” Appl. Phys. Lett. 87(11), 113115 (2005). [CrossRef]
- L. V. Titova, T. B. Hoang, H. E. Jackson, L. M. Smith, J. M. Yarrison-Rice, Y. Kim, H. J. Joyce, H. H. Tan, and C. Jagadish, “Temperature dependence of photoluminescence from single core-shell GaAs-AlGaAs nanowires,” Appl. Phys. Lett. 89(17), 173126 (2006). [CrossRef]
- H. W. Song, H. Q. Yu, G. H. Pan, X. Bai, B. Dong, X. T. Zhang, and S. K. Park, “Electrospinning preparation, structure, and photoluminescence properties of YBO3:Eu3+ nanotubes and nanowires,” Chem. Mater. 20(14), 4762–4767 (2008). [CrossRef]
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
- M. Bognitzki, W. Czado, T. Frese, A. Schaper, M. Hellwig, M. Steinhart, A. Greiner, and J. H. Wendorff, “Nanostructured fibers via electrospinning,” Adv. Mater. 13(1), 70–72 (2001). [CrossRef]
- X. M. Sui, C. L. Shao, and Y. C. Liu, “White-light emission of polyvinyl alcohol/ZnO hybrid nanofibers prepared by electrospinning,” Appl. Phys. Lett. 87(11), 113115 (2005). [CrossRef]
- L. V. Titova, T. B. Hoang, H. E. Jackson, L. M. Smith, J. M. Yarrison-Rice, Y. Kim, H. J. Joyce, H. H. Tan, and C. Jagadish, “Temperature dependence of photoluminescence from single core-shell GaAs-AlGaAs nanowires,” Appl. Phys. Lett. 89(17), 173126 (2006). [CrossRef]
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
- N. Tessler, V. Medvedev, M. Kazes, S. H. Kan, and U. Banin, “Efficient near-infrared polymer nanocrystal light-emitting diodes,” Science 295(5559), 1506–1508 (2002). [CrossRef] [PubMed]
- L. V. Titova, T. B. Hoang, H. E. Jackson, L. M. Smith, J. M. Yarrison-Rice, Y. Kim, H. J. Joyce, H. H. Tan, and C. Jagadish, “Temperature dependence of photoluminescence from single core-shell GaAs-AlGaAs nanowires,” Appl. Phys. Lett. 89(17), 173126 (2006). [CrossRef]
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
- J. F. Wang, M. S. Gudiksen, X. F. Duan, Y. Cui, and C. M. Lieber, “Highly polarized photoluminescence and photodetection from single indium phosphide nanowires,” Science 293(5534), 1455–1457 (2001). [CrossRef] [PubMed]
- L. Wang, H. Jia, X. Yu, Y. Zhang, P. Du, Z. Xi, and D. Jin, “Optimization of the photoluminescence properties of electrodeposited Y2O3:Eu3+ thin-film phosphors,” Electrochem. Solid-State Lett. 12(8), E20–E22 (2009). [CrossRef]
- Z. Y. Hou, P. P. Yang, C. X. Li, L. L. Wang, H. Z. Lian, Z. W. Quan, and J. Lin, “Preparation and luminescence properties of YVO4:Ln and Y(V, P)O4:Ln (Ln=Eu3+, Sm3+, Dy3+) nanofibers and microbelts by sol-gel/electrospinning process,” Chem. Mater. 20(21), 6686–6696 (2008). [CrossRef]
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- A. Greiner and J. H. Wendorff, “Electrospinning: a fascinating method for the preparation of ultrathin fibers,” Angew. Chem. Int. Ed. 46(30), 5670–5703 (2007). [CrossRef]
- M. Bognitzki, W. Czado, T. Frese, A. Schaper, M. Hellwig, M. Steinhart, A. Greiner, and J. H. Wendorff, “Nanostructured fibers via electrospinning,” Adv. Mater. 13(1), 70–72 (2001). [CrossRef]
- C. R. L. P. N. Jeukens, P. Jonkheijm, F. J. P. Wijnen, J. C. Gielen, P. C. M. Christianen, A. P. H. J. Schenning, E. W. Meijer, and J. C. Maan, “Polarized emission of individual self-assembled oligo(p-phenylenevinylene)-based nanofibers on a solid support,” J. Am. Chem. Soc. 127(23), 8280–8281 (2005). [CrossRef] [PubMed]
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
- L. Wang, H. Jia, X. Yu, Y. Zhang, P. Du, Z. Xi, and D. Jin, “Optimization of the photoluminescence properties of electrodeposited Y2O3:Eu3+ thin-film phosphors,” Electrochem. Solid-State Lett. 12(8), E20–E22 (2009). [CrossRef]
- G. P. Dong, X. F. Liu, X. D. Xiao, B. Qian, J. Ruan, S. Ye, H. C. Yang, D. P. Chen, and J. R. Qiu, “Photoluminescence of Ag nanoparticle embedded Tb3+/Ce3+ codoped NaYF4/PVP nanofibers prepared by electrospinning,” Nanotechnology 20(5), 055707 (2009). [CrossRef] [PubMed]
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
- G. P. Dong, X. F. Liu, X. D. Xiao, B. Qian, J. Ruan, S. Ye, H. C. Yang, D. P. Chen, and J. R. Qiu, “Photoluminescence of Ag nanoparticle embedded Tb3+/Ce3+ codoped NaYF4/PVP nanofibers prepared by electrospinning,” Nanotechnology 20(5), 055707 (2009). [CrossRef] [PubMed]
- J. Yang, Z. W. Quan, D. Y. Kong, X. M. Liu, and J. Lin, “Y2O3: Eu3+ microspheres: solvothermal synthesis and luminescence properties,” Cryst. Growth Des. 7(4), 730–735 (2007). [CrossRef]
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
- Z. Y. Hou, P. P. Yang, C. X. Li, L. L. Wang, H. Z. Lian, Z. W. Quan, and J. Lin, “Preparation and luminescence properties of YVO4:Ln and Y(V, P)O4:Ln (Ln=Eu3+, Sm3+, Dy3+) nanofibers and microbelts by sol-gel/electrospinning process,” Chem. Mater. 20(21), 6686–6696 (2008). [CrossRef]
- L. V. Titova, T. B. Hoang, H. E. Jackson, L. M. Smith, J. M. Yarrison-Rice, Y. Kim, H. J. Joyce, H. H. Tan, and C. Jagadish, “Temperature dependence of photoluminescence from single core-shell GaAs-AlGaAs nanowires,” Appl. Phys. Lett. 89(17), 173126 (2006). [CrossRef]
- G. P. Dong, X. F. Liu, X. D. Xiao, B. Qian, J. Ruan, S. Ye, H. C. Yang, D. P. Chen, and J. R. Qiu, “Photoluminescence of Ag nanoparticle embedded Tb3+/Ce3+ codoped NaYF4/PVP nanofibers prepared by electrospinning,” Nanotechnology 20(5), 055707 (2009). [CrossRef] [PubMed]
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
- H. W. Song, H. Q. Yu, G. H. Pan, X. Bai, B. Dong, X. T. Zhang, and S. K. Park, “Electrospinning preparation, structure, and photoluminescence properties of YBO3:Eu3+ nanotubes and nanowires,” Chem. Mater. 20(14), 4762–4767 (2008). [CrossRef]
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
- L. Wang, H. Jia, X. Yu, Y. Zhang, P. Du, Z. Xi, and D. Jin, “Optimization of the photoluminescence properties of electrodeposited Y2O3:Eu3+ thin-film phosphors,” Electrochem. Solid-State Lett. 12(8), E20–E22 (2009). [CrossRef]
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
- Z. L. Fu, S. H. Zhou, T. Q. Pan, and S. Y. Zhang, “Preparation and luminescent properties of cubic Eu3+:Y2O3 nanocrystals and comparison to bulk Eu3+:Y2O3,” J. Lumin. 124(2), 213–216 (2007). [CrossRef]
- H. W. Song, H. Q. Yu, G. H. Pan, X. Bai, B. Dong, X. T. Zhang, and S. K. Park, “Electrospinning preparation, structure, and photoluminescence properties of YBO3:Eu3+ nanotubes and nanowires,” Chem. Mater. 20(14), 4762–4767 (2008). [CrossRef]
- L. Wang, H. Jia, X. Yu, Y. Zhang, P. Du, Z. Xi, and D. Jin, “Optimization of the photoluminescence properties of electrodeposited Y2O3:Eu3+ thin-film phosphors,” Electrochem. Solid-State Lett. 12(8), E20–E22 (2009). [CrossRef]
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- Z. L. Fu, S. H. Zhou, T. Q. Pan, and S. Y. Zhang, “Preparation and luminescent properties of cubic Eu3+:Y2O3 nanocrystals and comparison to bulk Eu3+:Y2O3,” J. Lumin. 124(2), 213–216 (2007). [CrossRef]
- M. Bashouti, W. Salalha, M. Brumer, E. Zussman, and E. Lifshitz, “Alignment of colloidal CdS nanowires embedded in polymer nanofibers by electrospinning,” ChemPhysChem 7(1), 102–106 (2006). [CrossRef] [PubMed]
Adv. Mater.
- M. Kazes, D. Y. Lewis, Y. Ebenstein, T. Mokari, and U. Banin, “Lasing from semiconductor quantum rods in a cylindrical microcavity,” Adv. Mater. 14(4), 317–321 (2002). [CrossRef]
- M. Bognitzki, W. Czado, T. Frese, A. Schaper, M. Hellwig, M. Steinhart, A. Greiner, and J. H. Wendorff, “Nanostructured fibers via electrospinning,” Adv. Mater. 13(1), 70–72 (2001). [CrossRef]
Angew. Chem. Int. Ed.
- A. Greiner and J. H. Wendorff, “Electrospinning: a fascinating method for the preparation of ultrathin fibers,” Angew. Chem. Int. Ed. 46(30), 5670–5703 (2007). [CrossRef]
Appl. Phys. Lett.
- X. M. Sui, C. L. Shao, and Y. C. Liu, “White-light emission of polyvinyl alcohol/ZnO hybrid nanofibers prepared by electrospinning,” Appl. Phys. Lett. 87(11), 113115 (2005). [CrossRef]
- L. V. Titova, T. B. Hoang, H. E. Jackson, L. M. Smith, J. M. Yarrison-Rice, Y. Kim, H. J. Joyce, H. H. Tan, and C. Jagadish, “Temperature dependence of photoluminescence from single core-shell GaAs-AlGaAs nanowires,” Appl. Phys. Lett. 89(17), 173126 (2006). [CrossRef]
Chem. Mater.
- H. W. Song, H. Q. Yu, G. H. Pan, X. Bai, B. Dong, X. T. Zhang, and S. K. Park, “Electrospinning preparation, structure, and photoluminescence properties of YBO3:Eu3+ nanotubes and nanowires,” Chem. Mater. 20(14), 4762–4767 (2008). [CrossRef]
- Z. Y. Hou, P. P. Yang, C. X. Li, L. L. Wang, H. Z. Lian, Z. W. Quan, and J. Lin, “Preparation and luminescence properties of YVO4:Ln and Y(V, P)O4:Ln (Ln=Eu3+, Sm3+, Dy3+) nanofibers and microbelts by sol-gel/electrospinning process,” Chem. Mater. 20(21), 6686–6696 (2008). [CrossRef]
- D. O’Carroll and G. Redmond, “Highly anisotropic luminescence from poly (9,9-dioctylfluorene) nanowires doped with orientationally ordered #-phase polymer chains,” Chem. Mater. 20(20), 6501–6508 (2008). [CrossRef]
ChemPhysChem
- M. Bashouti, W. Salalha, M. Brumer, E. Zussman, and E. Lifshitz, “Alignment of colloidal CdS nanowires embedded in polymer nanofibers by electrospinning,” ChemPhysChem 7(1), 102–106 (2006). [CrossRef] [PubMed]
Cryst. Growth Des.
- J. Yang, Z. W. Quan, D. Y. Kong, X. M. Liu, and J. Lin, “Y2O3: Eu3+ microspheres: solvothermal synthesis and luminescence properties,” Cryst. Growth Des. 7(4), 730–735 (2007). [CrossRef]
Electrochem. Solid-State Lett.
- L. Wang, H. Jia, X. Yu, Y. Zhang, P. Du, Z. Xi, and D. Jin, “Optimization of the photoluminescence properties of electrodeposited Y2O3:Eu3+ thin-film phosphors,” Electrochem. Solid-State Lett. 12(8), E20–E22 (2009). [CrossRef]
J. Am. Chem. Soc.
- C. R. L. P. N. Jeukens, P. Jonkheijm, F. J. P. Wijnen, J. C. Gielen, P. C. M. Christianen, A. P. H. J. Schenning, E. W. Meijer, and J. C. Maan, “Polarized emission of individual self-assembled oligo(p-phenylenevinylene)-based nanofibers on a solid support,” J. Am. Chem. Soc. 127(23), 8280–8281 (2005). [CrossRef] [PubMed]
J. Lumin.
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- Z. L. Fu, S. H. Zhou, T. Q. Pan, and S. Y. Zhang, “Preparation and luminescent properties of cubic Eu3+:Y2O3 nanocrystals and comparison to bulk Eu3+:Y2O3,” J. Lumin. 124(2), 213–216 (2007). [CrossRef]
J. Phys. Chem. B
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
J. Phys. Chem. C
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
Nano Lett.
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
Nanotechnology
- G. P. Dong, X. F. Liu, X. D. Xiao, B. Qian, J. Ruan, S. Ye, H. C. Yang, D. P. Chen, and J. R. Qiu, “Photoluminescence of Ag nanoparticle embedded Tb3+/Ce3+ codoped NaYF4/PVP nanofibers prepared by electrospinning,” Nanotechnology 20(5), 055707 (2009). [CrossRef] [PubMed]
Nat. Mater.
- S. Kan, T. Mokari, E. Rothenberg, and U. Banin, “Synthesis and size-dependent properties of zinc-blende semiconductor quantum rods,” Nat. Mater. 2(3), 155–158 (2003). [CrossRef] [PubMed]
Opt. Express
- C. F. Lai, J. Y. Chi, H. C. Kuo, C. H. Chao, H. T. Hsueh, J. F. T. Wang, and W. Y. Yeh, “Anisotropy of light extraction from GaN two-dimensional photonic crystals,” Opt. Express 16(10), 7285–7294 (2008), http://www.opticsinfobase.org/oe/viewmedia.cfm?URI=oe-16-10-7285&seq=0 . [CrossRef] [PubMed]
- K. Y. Ko, Y. K. Lee, H. K. Park, Y. C. Kim, and Y. R. Do, “The variation of the enhanced photoluminescence efficiency of Y2O3:Eu3+ films with the thickness to the photonic crystal layer,” Opt. Express 16(8), 5689–5696 (2008), http://www.opticsinfobase.org/oe/viewmedia.cfm?URI=oe-16-8-5689&seq=0 . [CrossRef] [PubMed]
Science
- J. F. Wang, M. S. Gudiksen, X. F. Duan, Y. Cui, and C. M. Lieber, “Highly polarized photoluminescence and photodetection from single indium phosphide nanowires,” Science 293(5534), 1455–1457 (2001). [CrossRef] [PubMed]
- N. Tessler, V. Medvedev, M. Kazes, S. H. Kan, and U. Banin, “Efficient near-infrared polymer nanocrystal light-emitting diodes,” Science 295(5559), 1506–1508 (2002). [CrossRef] [PubMed]
2009, Wang, Electrochem. Solid-State Lett.
- L. Wang, H. Jia, X. Yu, Y. Zhang, P. Du, Z. Xi, and D. Jin, “Optimization of the photoluminescence properties of electrodeposited Y2O3:Eu3+ thin-film phosphors,” Electrochem. Solid-State Lett. 12(8), E20–E22 (2009). [CrossRef]
- G. P. Dong, X. F. Liu, X. D. Xiao, B. Qian, J. Ruan, S. Ye, H. C. Yang, D. P. Chen, and J. R. Qiu, “Photoluminescence of Ag nanoparticle embedded Tb3+/Ce3+ codoped NaYF4/PVP nanofibers prepared by electrospinning,” Nanotechnology 20(5), 055707 (2009). [CrossRef] [PubMed]
- G. P. Dong, X. D. Xiao, Y. Z. Chi, B. Qian, X. F. Liu, Z. J. Ma, S. Ye, E. Wu, H. P. Zeng, D. P. Chen, and J. R. Qiu, “Polarized luminescence properties of TiO2: Sm3+ microfibers and microbelts prepared by electrospinning,” J. Phys. Chem. C 113(22), 9595–9600 (2009). [CrossRef]
- H. W. Song, H. Q. Yu, G. H. Pan, X. Bai, B. Dong, X. T. Zhang, and S. K. Park, “Electrospinning preparation, structure, and photoluminescence properties of YBO3:Eu3+ nanotubes and nanowires,” Chem. Mater. 20(14), 4762–4767 (2008). [CrossRef]
- Z. Y. Hou, P. P. Yang, C. X. Li, L. L. Wang, H. Z. Lian, Z. W. Quan, and J. Lin, “Preparation and luminescence properties of YVO4:Ln and Y(V, P)O4:Ln (Ln=Eu3+, Sm3+, Dy3+) nanofibers and microbelts by sol-gel/electrospinning process,” Chem. Mater. 20(21), 6686–6696 (2008). [CrossRef]
- K. Y. Ko, Y. K. Lee, H. K. Park, Y. C. Kim, and Y. R. Do, “The variation of the enhanced photoluminescence efficiency of Y2O3:Eu3+ films with the thickness to the photonic crystal layer,” Opt. Express 16(8), 5689–5696 (2008), http://www.opticsinfobase.org/oe/viewmedia.cfm?URI=oe-16-8-5689&seq=0 . [CrossRef] [PubMed]
- D. O’Carroll and G. Redmond, “Highly anisotropic luminescence from poly (9,9-dioctylfluorene) nanowires doped with orientationally ordered #-phase polymer chains,” Chem. Mater. 20(20), 6501–6508 (2008). [CrossRef]
- A. Tribu, G. Sallen, T. Aichele, J. P. Regis Andre, A. Tribu, G. Sallen, T. Aichele, R. André, J.-P. Poizat, C. Bougerol, S. Tatarenko, and K. Kheng, “A high-temperature single-photon source from nanowire quantum dots,” Nano Lett. 8(12), 4326 (2008). [CrossRef]
- H. Q. Yu, H. W. Song, G. H. Pan, S. W. Lia, Z. X. Liu, X. Bai, T. Wang, S. Z. Lu, and H. F. Zhao, “Preparation and luminescent properties of europium-doped yttria fibers by electrospinning,” J. Lumin. 124(1), 39–44 (2007). [CrossRef]
- J. Yang, Z. W. Quan, D. Y. Kong, X. M. Liu, and J. Lin, “Y2O3: Eu3+ microspheres: solvothermal synthesis and luminescence properties,” Cryst. Growth Des. 7(4), 730–735 (2007). [CrossRef]
- Z. L. Fu, S. H. Zhou, T. Q. Pan, and S. Y. Zhang, “Preparation and luminescent properties of cubic Eu3+:Y2O3 nanocrystals and comparison to bulk Eu3+:Y2O3,” J. Lumin. 124(2), 213–216 (2007). [CrossRef]
- A. Greiner and J. H. Wendorff, “Electrospinning: a fascinating method for the preparation of ultrathin fibers,” Angew. Chem. Int. Ed. 46(30), 5670–5703 (2007). [CrossRef]
- L. V. Titova, T. B. Hoang, H. E. Jackson, L. M. Smith, J. M. Yarrison-Rice, Y. Kim, H. J. Joyce, H. H. Tan, and C. Jagadish, “Temperature dependence of photoluminescence from single core-shell GaAs-AlGaAs nanowires,” Appl. Phys. Lett. 89(17), 173126 (2006). [CrossRef]
- M. Bashouti, W. Salalha, M. Brumer, E. Zussman, and E. Lifshitz, “Alignment of colloidal CdS nanowires embedded in polymer nanofibers by electrospinning,” ChemPhysChem 7(1), 102–106 (2006). [CrossRef] [PubMed]
- X. Bai, H. W. Song, L. X. Yu, L. M. Yang, Z. X. Liu, G. H. Pan, S. Z. Lu, X. G. Ren, Y. Q. Lei, and L. B. Fan, “Luminescent properties of pure cubic phase Y2O3/Eu3+ nanotubes/nanowires prepared by a hydrothermal method,” J. Phys. Chem. B 109(32), 15236–15242 (2005). [CrossRef] [PubMed]
- C. R. L. P. N. Jeukens, P. Jonkheijm, F. J. P. Wijnen, J. C. Gielen, P. C. M. Christianen, A. P. H. J. Schenning, E. W. Meijer, and J. C. Maan, “Polarized emission of individual self-assembled oligo(p-phenylenevinylene)-based nanofibers on a solid support,” J. Am. Chem. Soc. 127(23), 8280–8281 (2005). [CrossRef] [PubMed]
- X. M. Sui, C. L. Shao, and Y. C. Liu, “White-light emission of polyvinyl alcohol/ZnO hybrid nanofibers prepared by electrospinning,” Appl. Phys. Lett. 87(11), 113115 (2005). [CrossRef]
- S. Kan, T. Mokari, E. Rothenberg, and U. Banin, “Synthesis and size-dependent properties of zinc-blende semiconductor quantum rods,” Nat. Mater. 2(3), 155–158 (2003). [CrossRef] [PubMed]
- N. Tessler, V. Medvedev, M. Kazes, S. H. Kan, and U. Banin, “Efficient near-infrared polymer nanocrystal light-emitting diodes,” Science 295(5559), 1506–1508 (2002). [CrossRef] [PubMed]
- M. Kazes, D. Y. Lewis, Y. Ebenstein, T. Mokari, and U. Banin, “Lasing from semiconductor quantum rods in a cylindrical microcavity,” Adv. Mater. 14(4), 317–321 (2002). [CrossRef]
- J. F. Wang, M. S. Gudiksen, X. F. Duan, Y. Cui, and C. M. Lieber, “Highly polarized photoluminescence and photodetection from single indium phosphide nanowires,” Science 293(5534), 1455–1457 (2001). [CrossRef] [PubMed]
- M. Bognitzki, W. Czado, T. Frese, A. Schaper, M. Hellwig, M. Steinhart, A. Greiner, and J. H. Wendorff, “Nanostructured fibers via electrospinning,” Adv. Mater. 13(1), 70–72 (2001). [CrossRef]
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