化学物理
分子动力学
咪唑
质子
离解(化学)
分子
质子输运
聚合物
多孔性
化学
材料科学
纳米技术
计算化学
物理化学
立体化学
有机化学
复合材料
物理
量子力学
作者
Linkun Cai,Junsheng Yang,Yuyan Lai,Yuling Liang,Rongchun Zhang,Cheng Gu,Susumu Kitagawa,Panchao Yin
标识
DOI:10.1002/anie.202211741
摘要
The nanoconfinement of proton carrier molecules may contribute to the lowing of their proton dissociation energy. However, the free proton transportation does not occur as easily as in liquid due to the restricted molecular motion from surface attraction. To resolve the puzzle, herein, imidazole is confined in the channels of porous coordination polymers with tunable geometries, and their electric/structural relaxations are quantified. Imidazole confined in a square-shape channels exhibits dynamics heterogeneity of core-shell-cylinder model. The core and shell layer possess faster and slower structural dynamics, respectively, when compared to the bulk imidazole. The dimensions and geometry of the nanochannels play an important role in both the shielding of the blocking effect from attractive surfaces and the frustration filling of the internal proton carrier molecules, ultimately contributing to the fast dynamics and enhanced proton conductivity.
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