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Particle size effects for carbon nanofiber supported platinum and ruthenium catalysts for the selective hydrogenation of cinnamaldehyde

机译:碳纳米纤维负载铂和钌催化剂的粒度效应用于肉桂醛的选择性加氢

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摘要

The selective hydrogenation of cinnamaldehyde was studied over carbon nanofibers (CNF) supported platinum and ruthenium catalysts. The catalysts differed independently in their metal particle sizes and amount of acidic oxygen groups on the CNF surface. For the catalysts with oxygen on the CNF surface, the larger metal particles ( 3.5 nm) displayed the highest selectivity towards cinnamyl alcohol. Surprisingly, when the oxygen groups were removed from the catalyst surface, the smaller particles ( 2.0 nm) exhibited the highest selectivity to cinnamyl alcohol. Also the hydrogenation activity increased for all catalysts after oxygen removal. A model is proposed to account for the role of the metal particle size and oxygen surface groups in the hydrogenation of cinnamaldehyde.
机译:在碳纳米纤维(CNF)负载的铂和钌催化剂上研究了肉桂醛的选择性加氢。催化剂的金属颗粒大小和CNF表面的酸性氧基团数量各不相同。对于CNF表面带有氧气的催化剂,较大的金属颗粒(3.5 nm)显示出对肉桂醇的最高选择性。令人惊讶地,当从催化剂表面除去氧基团时,较小的颗粒(2.0nm)对肉桂醇表现出最高的选择性。除氧后,所有催化剂的氢化活性也增加。提出了一个模型来说明肉桂醛加氢中金属粒径和氧表面基团的作用。

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