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高温量子隧穿和氢键重排表征了一种磷鎓基质子离子液体中的固-固相变。

High-Temperature Quantum Tunneling and Hydrogen Bonding Rearrangements Characterize the Solid-Solid Phase Transitions in a Phosphonium-Based Protic Ionic Liquid.

作者信息

Khudozhitkov Alexander E, Donoshita Masaki, Stepanov Alexander G, Philippi Frederik, Rauber Daniel, Hempelmann Rolf, Kitagawa Hiroshi, Kolokolov Daniil I, Ludwig Ralf

机构信息

Boreskov Institute of Catalysis, Siberian Branch of Russian Academy of Sciences, Prospekt Akademika Lavrentieva 5, Novosibirsk, 630090, Russia.

Novosibirsk State University, Pirogova Street 2, Novosibirsk, 630090, Russia.

出版信息

Chemistry. 2022 Apr 22;28(23):e202200257. doi: 10.1002/chem.202200257. Epub 2022 Mar 28.

Abstract

We report the complex phase behavior of the glass forming protic ionic liquid (PIL) d3-octylphosphonium bis(trifluoromethylsulfonyl)imide [C H PD ][NTf ] by means of solid-state NMR spectroscopy. Combined line shape and spin relaxation studies of the deuterons in the PD group of the octylphosphonium cation allow to map and correlate the phase behavior for a broad temperature range from 71 K to 343 K. In the solid PIL at 71 K, we observed a static state, characterized by the first deuteron quadrupole coupling constant reported for PD deuterons. A transition enthalpy of about 12 kJ mol from the static to the mobile state with increasing temperature suggests the breaking of a weak, charge-enhanced hydrogen bond between cation and anion. The highly mobile phase above 100 K exhibits an almost disappearing activation barrier, strongly indicating quantum tunneling. Thus, we provide first evidence of tunneling driven mobility of the hydrogen bonded P-D moieties in the glassy state of PILs, already at surprisingly high temperatures up to 200 K. Above 250 K, the mobile phase turns from anisotropic to isotropic motion, and indicates strong internal rotation of the PD group. The analyzed line shapes and spin relaxation times allow us to link the structural and dynamical behavior at molecular level with the phase behavior beyond the DSC traces.

摘要

我们通过固态核磁共振光谱法报告了玻璃形成质子离子液体(PIL)d3-辛基鏻双(三氟甲基磺酰)亚胺[C₈H₁₇PD₃][NTf₂]的复杂相行为。对辛基鏻阳离子PD基团中氘核的线形和自旋弛豫联合研究,能够绘制并关联71 K至343 K宽温度范围内的相行为。在71 K的固态PIL中,我们观察到一种静态状态,其特征是报道的PD氘核的首个氘核四极耦合常数。随着温度升高,从静态到动态状态的转变焓约为12 kJ·mol,这表明阳离子和阴离子之间的弱电荷增强氢键断裂。100 K以上的高动态相几乎呈现消失的活化能垒,强烈表明量子隧穿。因此,我们首次提供了证据,证明在PIL的玻璃态中,氢键连接的P-D部分在高达200 K的惊人高温下就存在隧穿驱动的迁移率。在250 K以上,动态相从各向异性运动转变为各向同性运动,并表明PD基团有强烈的内旋转。分析的线形和自旋弛豫时间使我们能够将分子水平的结构和动力学行为与DSC曲线之外的相行为联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3254/9311734/971af54f8397/CHEM-28-0-g001.jpg

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