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Ag containing porous Au structures as highly selective catalysts for glycolate and formate

机译:Ag)含有多孔非盟的结构高度有选择性的羧基乙酸和甲酸的催化剂

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摘要

Formic acid and its salts are important chemical intermediates. Industrial production of formic acid involves liquid phase carbonylation of methanol to methyl formate followed by hydrolysis to formic acid. Alternatively, formic acid can be generated during glycerol electro-oxidation when glycerol undergoes C-C bond cleavage. Silver based catalysts such as carbon supported silver-gold alloys significantly improve selectivity to formic acid during glycerol electro-oxidation. However, these catalysts tend to suffer from poor electrochemical activity. Herein, we examined the ability of Ag containing, porous Au structures to tune the glycerol oxidation pathway towards formate and glycolate whilst maintaining high electro-catalytic activity. Our catalyst consisted of an Au rich porous framework that possessed residual amounts of Ag within its pores. When tested for glycerol electro-oxidation, the Ag containing porous Au catalyst exhibited both high selectivity towards formate and high electrochemical activity.
机译:甲酸及其盐是重要的化学物质中间体。酸包括液相羰基化甲醇甲酸甲酯水解紧随其后甲酸。生成的甘油electro-oxidation期间甘油进行碳碳键乳沟。基于催化剂如碳的支持金银合金显著改善选择性在丙三醇甲酸electro-oxidation。遭受贫穷的电化学活性。在此,我们研究了Ag)包含的能力,多孔非盟结构优化甘油对甲酸和乙醇酸盐或酯氧化途径同时保持较高electro-catalytic活动。多孔框架,拥有剩余金额的Ag)在其毛孔。electro-oxidation,包含多孔非盟的Ag)表现出高选择性催化剂甲酸和高电化学活性。

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