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质子离子液体体系中氢键基序的光谱特征:固态硝酸二乙铵的见解

Spectroscopic Signatures of Hydrogen-Bonding Motifs in Protonic Ionic Liquid Systems: Insights from Diethylammonium Nitrate in the Solid State.

作者信息

Vázquez-Fernández Isabel, Drużbicki Kacper, Fernandez-Alonso Felix, Mukhopadhyay Sanghamitra, Nockemann Peter, Parker Stewart F, Rudić Svemir, Stana Simona-Maria, Tomkinson John, Yeadon Darius J, Seddon Kenneth R, Plechkova Natalia V

机构信息

The QUILL Research Centre, School of Chemistry and Chemical Engineering, The Queen's University of Belfast, Belfast BT9 5AG, Northern Ireland, U.K.

Materials Physics Center, CSIC-UPV/EHU, Paseo Manuel de Lardizabal 5, Donostia-San Sebastian 20018, Spain.

出版信息

J Phys Chem C Nanomater Interfaces. 2021 Nov 11;125(44):24463-24476. doi: 10.1021/acs.jpcc.1c05137. Epub 2021 Oct 27.

Abstract

Diethylammonium nitrate, [N][NO], and its perdeuterated analogue, [N ] [NO], were structurally characterized and studied by infrared, Raman, and inelastic neutron scattering (INS) spectroscopy. Using these experimental data along with state-of-the-art computational materials modeling, we report unambiguous spectroscopic signatures of hydrogen-bonding interactions between the two counterions. An exhaustive assignment of the spectral features observed with each technique has been provided, and a number of distinct modes related to NH···O dynamics have been identified. We put a particular emphasis on a detailed interpretation of the high-resolution, broadband INS experiments. In particular, the INS data highlight the importance of conformational degrees of freedom within the alkyl chains, a ubiquitous feature of ionic liquid (IL) systems. These findings also enable an in-depth physicochemical understanding of protonic IL systems, a first and necessary step to the tailoring of hydrogen-bonding networks in this important class of materials.

摘要

硝酸二乙铵,[N][NO],及其全氘代类似物,[N ][NO],通过红外、拉曼和非弹性中子散射(INS)光谱进行了结构表征和研究。利用这些实验数据以及最先进的计算材料建模,我们报告了两种抗衡离子之间氢键相互作用的明确光谱特征。提供了每种技术观察到的光谱特征的详尽归属,并确定了一些与NH···O动力学相关的独特模式。我们特别强调对高分辨率宽带INS实验的详细解释。特别是,INS数据突出了烷基链内构象自由度的重要性,这是离子液体(IL)系统的一个普遍特征。这些发现还使我们能够对质子化IL系统进行深入的物理化学理解,这是在这类重要材料中定制氢键网络的首要且必要的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92bd/8592064/90692b66e1f6/jp1c05137_0002.jpg

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