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Charge-induced proton penetration across two-dimensional clay materials

机译:Charge-induced质子渗透在二维粘土材料

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摘要

Two-dimensional clay materials possess superior thermal and chemical stability, and the intrinsic tubular channels in their atomic structure provide possible routes for proton penetration. Therefore, they are expected to overcome the lack of materials that can conduct protons between 100–500 °C. In this work, we investigated the detailed proton penetration mechanism across 2D clay nanosheets with different isomorphic substitutions and counterions using extensive ab initio molecular dynamics and metadynamics simulations. We found that the presence of negative surface charges can dramatically reduce the proton penetration energy barrier to about one-third that of the neutral case, making it a feasible choice for the design of next-generation high-temperature proton exchange membranes. By tuning the isomorphic substitutions, the proton conductivity of single-layer clay materials can be altered.
机译:二维粘土材料具有优越的热化学稳定性和内在原子结构的管状通道为质子渗透提供可能的途径。因此,他们将克服缺乏的材料可以进行质子之间100 - 500°C。在2 d详细质子渗透机制粘土nanosheets不同的同构替换,使用广泛的ab抗衡离子从头算分子动力学和metadynamics模拟。表面负电荷可以显著减少质子能量势垒到渗透三分之一的中立的情况下,这一个新一代的设计可行的选择高温质子交换膜。调优同构替换,质子单层粘土材料的电导率被改变。

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