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被困于固态仲氢中的分子内的大幅度运动。

Large amplitude motions within molecules trapped in solid parahydrogen.

作者信息

Gutiérrez-Quintanilla Alejandro, Chevalier Michèle, Ceponkus Justinas, Lozada-García Rolando R, Mestdagh Jean-Michel, Crépin Claudine

机构信息

Institut des Sciences Moléculaires d'Orsay (ISMO), UMR 8214, CNRS, Univ. Paris-Sud, Université Paris-Saclay, F-91405 Orsay, France.

Institute of Chemical Physics, Vilnius University, Sauletekio av. 9 bat. III, L-10222 Vilnius, Lithuania.

出版信息

Faraday Discuss. 2018 Dec 13;212(0):499-515. doi: 10.1039/c8fd00080h.

Abstract

Molecules of the β-diketone and β-dialdehyde families were trapped in solid parahydrogen (pH2) to investigate the vibrational behavior of systems containing an intramolecular hydrogen bond (IHB). In the simplest β-diketone, acetylacetone (AcAc), H transfer related to the IHB is coupled with methyl torsions. In pH2, the study of nuclear spin conversion (NSC) in methyl groups allows the characterisation of the influence of these large amplitude motions on the vibrational modes. The deuteration of the OH group involved in the IHB has important consequences on the vibrational spectrum of the molecule and evidence of NSC in methyl groups is difficult to obtain. In the chlorine derivative (3-chloroacetylacetone), the H-transfer is no longer coupled with methyl torsion, and NSC has undetectable effects on the IR spectrum. A search of H tunnelling splitting in the IR spectra of β-dialdehydes trapped in pH2 was performed. A few modes of 2-chloromalonaldehyde appear as doublets and were assigned to tunnelling levels. The spectroscopic results related to large amplitude motions are detailed and discussed, highlighting puzzling effects.

摘要

将β-二酮和β-二醛家族的分子捕获在固态仲氢(pH2)中,以研究含有分子内氢键(IHB)的体系的振动行为。在最简单的β-二酮乙酰丙酮(AcAc)中,与IHB相关的氢转移与甲基扭转耦合。在pH2中,对甲基中核自旋转换(NSC)的研究能够表征这些大幅度运动对振动模式的影响。参与IHB的羟基的氘化对分子的振动光谱有重要影响,并且难以获得甲基中NSC的证据。在氯衍生物(3-氯乙酰丙酮)中,氢转移不再与甲基扭转耦合,并且NSC对红外光谱没有可检测的影响。对捕获在pH2中的β-二醛的红外光谱中的氢隧穿分裂进行了研究。2-氯丙二醛的一些模式表现为双峰,并被归因于隧穿能级。详细讨论了与大幅度运动相关的光谱结果,突出了令人困惑的效应。

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