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首页> 外文期刊>International journal of hydrogen energy >Facile and eco-friendly synthesis of porous carbon nanosheets as ideal platform for stabilizing rhodium nanoparticles in efficient hydrolysis of ammonia borane
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Facile and eco-friendly synthesis of porous carbon nanosheets as ideal platform for stabilizing rhodium nanoparticles in efficient hydrolysis of ammonia borane

机译:便捷,环保的多孔碳纳米片合成,是稳定氨硼烷有效水解铑纳米粒子的理想平台

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摘要

Carbon materials have been demonstrated as excellent carriers for preparing supported metal nanocatalysts in catalytic applications. However, numerous chemical activators including strong acids and bases were applied, leading to the entire process dangerous and hazardous. Eco-friendly, economic, and convenient synthesis of carbon materials with desired properties as supports for metal nanoparticle (NP) stabilization to boost performance is important but remains challenging. Here, we developed a facile and eco-friendly strategy to synthesize porous carbon nanosheets (PCNs) with ultrahigh specific surface area (2575.1 m(2)/g) via pyrolysis the mixture of potassium oxalate and glucose. The resultant PCNs can be used as ideal platform for in-situ distribution of small Rh NPs (Rh/PCNs) as efficient catalysts in hydrogen production from ammonia borane (AB) under ambient conditions. Specifically, Rh/PCNs displayed high activity for AB hydrolysis, with a turnover frequency (TOF) of 513.2 min(-1). Small and well-distributed Rh NPs on PCNs with large catalytically active surface atoms are contributed to the high catalytic property of Rh/PCNs for the reaction. Present study has demonstrated that the PCNs is a superior catalyst support for preparing a series of metal NPs in other catalytic applications beyond hydrolysis reaction. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:碳材料已被证明是制备催化应用中负载型金属纳米催化剂的优良载体。但是,使用了许多化学活化剂,包括强酸和强碱,导致整个过程危险且危险。具有所需特性的生态友好,经济,便捷的碳材料合成方法,可作为金属纳米颗粒(NP)稳定化的载体,以提高性能,这一点很重要,但仍具有挑战性。在这里,我们开发了一种简便且环保的策略,通过草酸钾和葡萄糖的混合物热解合成具有超高比表面积(2575.1 m(2)/ g)的多孔碳纳米片(PCN)。所得的PCN可用作在环境条件下原位分布小Rh NP(Rh / PCN)的理想平台,作为从氨硼烷(AB)生产氢气的有效催化剂。具体地说,Rh / PCNs对AB水解显示高活性,周转频率(TOF)为513.2 min(-1)。具有较大催化活性表面原子的PCN上分布均匀的小Rh NPs有助于Rh / PCNs对反应的高催化性能。目前的研究表明,PCNs是制备除水解反应以外的其他催化应用中的一系列金属NPs的优良催化剂载体。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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