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首页> 外文期刊>International journal of hydrogen energy >Hydrogen storage in a layered flexible [Ni-2(btc)(en)(2)](n) coordination polymer
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Hydrogen storage in a layered flexible [Ni-2(btc)(en)(2)](n) coordination polymer

机译:层状柔性[Ni-2(btc)(en)(2)](n)配位聚合物中的氢存储

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[Ni-2(btc)(en)(2)](n) coordination polymer exhibits a layered two-dimensional structure with weak interaction between the layers. Correlation of experimental measurements, DFT calculations and molecular simulations demonstrated that its structural features, primarily the inherent flexibility of the layered polymeric structure, lead to improved hydrogen storage performance at room temperature, due to significant enhancement in isosteric heats of hydrogen adsorption. Volumetric measurements of hydrogen adsorption at room temperature show up to 0.3 wt.% hydrogen absorbed at 303 K and 2.63 bar of hydrogen pressure, with isosteric heats of adsorption of about 12.5 kJ mol(-1). Predicted performance at room temperature is 1.8 wt.% at 48 bar and 3.5 wt.% at 100 bar, better than both MOF-5 and NU-100, with calculated values of isosteric heats for adsorption of hydrogen in 8-13 kJ mol(-1) range at both 77 K and 303 K. Grand canonical Monte Carlo calculations show that this material, at 77 K, exhibits gravimetric hydrogen densities of more than 10 wt.% (up to 8.3 wt.% excess) with the corresponding volumetric density of at least 66 gL(-1), which is comparable to MOF-5, but achieved with considerably smaller surface area of about 2500 m(2) g(-1). This study shows that layered two-dimensional MOFs could be a step towards MOF systems with significantly higher isosteric heats of adsorption, which could provide better room temperature hydrogen storage capabilities. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:[Ni-2(btc)(en)(2)](n)配位聚合物表现出层状二维结构,层间相互作用弱。实验测量,DFT计算和分子模拟的相关性表明,其结构特征(主要是层状聚合物结构的固有柔韧性)由于氢吸附等排热的显着提高而导致室温下储氢性能的提高。室温下氢吸附的体积测量结果显示,在303 K和2.63 bar的氢压下,氢的吸收量高达0.3 wt。%,吸附的​​等构热约为12.5 kJ mol(-1)。室温下的预测性能在48 bar下为1.8 wt。%,在100 bar下为3.5 wt。%,优于MOF-5和NU-100,其计算得出的等构体热值为8-13 kJ mol( -1)范围分别在77 K和303 K范围内。大正则蒙特卡洛计算表明,这种材料在77 K下的重量氢密度大于10 wt。%(过量达8.3 wt。%),且具有相应的体积密度至少为66 gL(-1),可与MOF-5相提并论,但表面积却要小得多,约为2500 m(2)g(-1)。这项研究表明,分层二维MOF可能是迈向MOF系统的一步,而MOF系统具有更高的等规吸附热,可以提供更好的室温氢存储能力。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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