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Reorientational dynamics of trimethoxyboroxine: A molecular glass former studied by dielectric spectroscopy and B-11 nuclear magnetic resonance

机译:三甲氧基硼梭素的重新定位动态:通过介电光谱和B-11核磁共振研究的分子玻璃

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摘要

In this work, trimethoxyboroxine (TMB) is identified as a small-molecule glass former. In its viscous liquid as well as glassy states, static and dynamic properties of TMB are explored using various techniques. It is found that, on average, the structure of the condensed TMB molecules deviates from threefold symmetry so that TMB's electric dipole moment is nonzero, thus rendering broadband dielectric spectroscopy applicable. This method reveals the super-Arrhenius dynamics that characterizes TMB above its glass transition, which occurs at about 204 K. To extend the temperature range in which the molecular dynamics can be studied, B-11 nuclear magnetic resonance experiments are additionally carried out on rotating and stationary samples: Exploiting dynamic second-order shifts, spin-relaxation times, line shape effects, as well as stimulated-echo and two-dimensional exchange spectroscopy, a coherent picture regarding the dynamics of this glass former is gained.
机译:在这项工作中,将三甲氧基硼氧胺(TMB)鉴定为小分子玻璃剂。 在其粘性液体以及玻璃状状态下,使用各种技术探索TMB的静态和动态性质。 结果发现,平均而言,冷凝的TMB分子的结构偏离了三倍对称性,使得TMB的电偶极力矩是非零,因此提供适用的宽带介电光谱。 该方法揭示了在其玻璃化转变之上表征TMB的超级Arhenius动态,其发生在约204k。为了延长可以研究分子动力学的温度范围,另外在旋转上进行B-11核磁共振实验 和固定式样品:利用动态二阶换档,自旋弛豫时间,线形效应以及刺激回波和二维交换光谱,对该玻璃成形器的动态进行相干图。

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