Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group
  • Applied Spectroscopy
  • Vol. 69,
  • Issue 1,
  • pp. 130-142
  • (2015)

A New Way to Interpret Perturbation-Correlation Moving-Window Two-Dimensional Correlation Spectroscopy: Probing the Dynamic Interaction of Ionic Liquid 1-Ethyl-3-Methylimidazolium Acetate to Absorb Atmospheric Water

Not Accessible

Your library or personal account may give you access

Abstract

A rule to interpret perturbation-correlation moving-window two-dimensional correlation spectroscopy (PCMW2D) was developed. Compared with Morita's rule, this proposed rule retains the ability to obtain interval features (i.e., monotonicity, concavity, and convexity) and adds the function to quickly and accurately determine both tipping points (i.e., local extrema and inflection points). It could be described as follows: the local extrema and inflection point could be determined by the zero point with an opposite sign on its left and right side in ΠΦ (synchronous PCMW2D) and ΠΨ (asynchronous PCMW2D), respectively. Specifically, a negative left (right) side and a positive right (left) side of point indicates a local minimal (maximal) value. By using the rule to interpret ΠIR (PCMW2D infrared spectroscopy) of 1-ethyl-3-methyl-imidazolium acetate [EMIM][Ac]-atmospheric water (H2O) as a function of time, we found that the atmospheric water was absorbed only into the bulk of [EMIM][Ac] before 150 min by hydrogen-bonding interaction, only onto the surface of [EMIM][Ac] after 330 min by van der Waals force, and both to the bulk and surface of [EMIM][Ac] between 150 and 330 min by hydrogen-boding and van der Waals force simultaneously. The proportion of bulk water sorption and surface water sorption to [EMIM][Ac] was about 4 and 96%, respectively.

PDF Article
More Like This
Easy interpretation of optical two-dimensional correlation spectra

Kees Lazonder, Maxim S. Pshenichnikov, and Douwe A. Wiersma
Opt. Lett. 31(22) 3354-3356 (2006)

Thermally tunable broadband metamaterial absorbers based on ionic liquids

Fulong Yang, Chenyang Zhang, Aihua Zhang, Xiaoqing Zhu, Huan Xu, and Dayu Wang
Opt. Express 30(25) 45883-45894 (2022)

Atmospheric water vapor absorption at 1.3 μm

S. L. Bragg and J. D. Kelley
Appl. Opt. 26(3) 506-513 (1987)

Cited By

You do not have subscription access to this journal. Cited by links are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.