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Investigation of Polyaniline Nanocomposites and Cross-Linked Polyaniline for Hydrogen Storage

机译:聚苯胺纳米复合材料的研究与储氢交联聚苯胺

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One of the biggest challenges for the commercial application of existing hydrogen storage materials is to meet the desired high volumetric and gravimetric hydrogen storage capacity and the ability to refuel quickly and repetitively as a safe transportation system at moderate temperature and pressure. In this work, we have synthesized polyaniline nanocomposites (PANINC) and hypercrosslinked polyaniline (PANI-HYP) materials to provide structure and composition which could meet the specific demands of a practical hydrogen storage system. Hydrogen sorption measurements showed that high surface area porous structure enhanced the storage capacity significantly at 77.3K and 1atm (i.e., 0.8wt% for PANI-HYP). However at 298K, storage capacity of all samples is less than 0.5wt% at 70 bar. Hydrogen sorption results along with the surface area measurements confirmed that hydrogen storage mechanism predominantly based on physisorption for polyaniline.
机译:现有储氢材料商业应用的最大挑战之一是满足所需的高容积和重量储氢能力,以及在适度的温度和压力下作为安全运输系统快速和重复加油的能力。在这项工作中,我们已经合成了聚苯胺纳米复合材料(Paninc)和超交联的聚苯胺(Pani-Hyp)材料,提供了可以满足实用储氢系统的特定要求的结构和组合物。氢吸收测量表明,高表面积多孔结构在77.3K和1ATM中显着提高了储存能力(即,Pani-Hyp的0.8wt%)。然而,在298K处,所有样品的储存能力在70巴时小于0.5wt%。氢气吸附结果随着表面积测量的结果证实,储氢机制主要基于聚苯胺的理由。

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