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Controlled synthesis of monodisperse PdxSn100-x nanoparticles and their catalytic activity for hydrogen generation from the hydrolysis of ammonia-borane

机译:单分散PdxSn100-x纳米粒子的受控合成及其对氨硼烷水解产生氢气的催化活性

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Composition controllable monodisperse palladium tin nanoparticles (PdxSn100-x NPs, x = 77, 69, 63, 52, 49) were prepared by the thermal reduction of palladium bromide and tin acetate in the presence of trioctylphosphine and oleylamine. The NPs were investigated for their catalytic abilities of hydrogen generation from hydrolysis of ammonia borane complex. Deposited on a carbon support without any further treatment, these NPs were active nanocatalysts for hydrolysis of ammonia borane complex, and their catalytic activities were highly composition dependent. Among these NPs studied, Pd69Sn31 NPs exhibited the highest catalytic activity and stability under mild reaction conditions. Kinetic investigations showed that the catalytic hydrolysis of ammonia borane was first-order with respect to catalyst concentration and zero-order with respect to ammonia borane concentration. The activation energy for the hydrolysis of ammonia borane complex in the presence of Pd69Sn31 NPs was calculated to be 27.22 kJ mol(-1). The PdxSn100-x NPs are promising candidates toward the practical development of the ammonia borane complex as a feasible hydrogen storage medium for fuel cell applications under ambient conditions. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过在三辛基膦和油胺的存在下热还原溴化钯和乙酸锡制备可控制组成的单分散钯锡纳米颗粒(PdxSn100-x NPs,x = 77、69、63、52、49)。研究了NPs催化氨硼烷络合物水解产生氢的催化能力。这些NP无需任何进一步处理即可沉积在碳载体上,是用于氨硼烷络合物水解的活性纳米催化剂,其催化活性高度依赖组成。在研究的这些NP中,Pd69Sn31 NP在温和的反应条件下表现出最高的催化活性和稳定性。动力学研究表明,氨硼烷的催化水解相对于催化剂浓度为一级,相对于氨硼烷浓度为零级。在Pd69Sn31 NPs存在下,氨硼烷络合物水解的活化能经计算为27.22 kJ mol(-1)。 PdxSn100-x NPs有望成为氨硼烷配合物的实际开发,作为在环境条件下燃料电池应用中可行的储氢介质。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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