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单乙醇气溶胶微滴的光镊极化拉曼光谱:液滴尺寸对旋转弛豫时间和粘度的影响

Optical Trapping-Polarized Raman Microspectroscopy of Single Ethanol Aerosol Microdroplets: Droplet Size Effects on Rotational Relaxation Time and Viscosity.

作者信息

Nakajima Ryosuke, Miura Atsushi, Abe Sayaka, Kitamura Noboru

机构信息

Department of Chemistry, Faculty of Science, Hokkaido University, Sapporo 060-0810, Japan.

Department of Chemical Sciences and Engineering, Graduate School of Chemical Sciences and Engineering, Hokkaido University, Sapporo 060-0810, Japan.

出版信息

Anal Chem. 2021 Mar 30;93(12):5218-5224. doi: 10.1021/acs.analchem.0c05406. Epub 2021 Mar 16.

Abstract

Optical trapping-polarized Raman microspectroscopy of single ethanol (EtOH) microdroplets with a diameter () of 6.1-16.5 μm levitated in an EtOH vapor-saturated air/N gas atmosphere has been explored to elucidate the vibrational and rotational motions of EtOH in the droplets at 22.0 °C. The Raman spectral bandwidth of the C-C stretching vibrational mode observed for an aerosol EtOH microdroplet was narrower than that of bulk EtOH, suggesting that the vibrational/rotational motions of EtOH in the aerosol system were restricted compared to those in the bulk system. In practice, polarized Raman microspectroscopy demonstrated that the rotational relaxation time (τ) of EtOH in an aerosol microdroplet with = 16. 5 μm was slower (2.33 ps) than that in a bulk EtOH (1.65 ps), while the vibrational relaxation times (τ) in the aerosol and bulk EtOH systems were almost comparable with one another: 0.86-0.98 ps. Furthermore, although the τ value of an aerosol EtOH microdroplet was almost unchanged irrespective of as described above, the τ value increased from 2.33 to 3.57 ps with a decrease in from 16.5 to 6.1 μm, which corresponded to the increase in EtOH viscosity (η) from 1.33 to 2.04 cP with the decrease in . The droplet size dependences of τ and η in an aerosol EtOH microdroplet were discussed in terms of the gas/droplet interfacial molecular arrangements of EtOH and Laplace pressure experienced by a spherical EtOH microdroplet in the gas phase.

摘要

研究了在乙醇(EtOH)蒸汽饱和的空气/N₂气体气氛中悬浮的直径()为6.1 - 16.5μm的单个乙醇(EtOH)微滴的光镊偏振拉曼光谱,以阐明22.0°C下微滴中EtOH的振动和旋转运动。观察到的气溶胶EtOH微滴的C - C拉伸振动模式的拉曼光谱带宽比本体EtOH的窄,这表明与本体系统相比,气溶胶系统中EtOH的振动/旋转运动受到限制。实际上,偏振拉曼光谱表明,直径 = 16.5μm的气溶胶微滴中EtOH的旋转弛豫时间(τ)比本体EtOH中的慢(2.33 ps),而气溶胶和本体EtOH系统中的振动弛豫时间(τ)彼此几乎相当:0.86 - 0.98 ps。此外,尽管如上所述,气溶胶EtOH微滴的τ值几乎与无关,但随着从16.5μm减小到6.1μm,τ值从2.33 ps增加到3.57 ps,这对应于随着减小,EtOH粘度(η)从1.33 cP增加到2.04 cP。从EtOH的气/滴界面分子排列以及球形EtOH微滴在气相中所经历的拉普拉斯压力方面讨论了气溶胶EtOH微滴中τ和η对液滴尺寸的依赖性。

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