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Electrosynthesis of diphenyl carbonate catalyzed by Pd2+/0 (in situ NHC) redox catalyst promoted at Au anode

机译:Pd2 + / 0(原位NHC)氧化还原催化剂在Au阳极上催化合成碳酸二苯酯

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摘要

The effects of Au anodes on electrochemical carbonylation of phenol with CO (1 atm) to diphenyl carbonate (DPC) catalyzed by Pd (in situ NHC) electrocatalyst were studied under galvanostatic electrolysis conditions. Au supported on carbon materials (Au/carbon) were effective anodes for oxidation of the homogeneous Pd electrocatalyst. Various carbon materials, Vulcan XC-72 carbon black (XC72), activate carbon, Ketjenblack, and graphene nanoplatelets (graphene-1, -2, -3) were tested as a support for Au. The Au/graphene-3 was the most effective anode for DPC formation. Effects of Au loadings and reducing agents (H-2 and NaBH4) on the reactivity of the Au/graphene-3 anode for the DPC formation were studied and the materials were characterized using XRD spectroscopy and TEM analysis. These experimental facts indicated that small Au particles on the surface of graphene were superior for the DPC synthesis by the Pd (in situ NHC) electrocatalyst.
机译:在恒电流电解条件下,研究了金阳极对Pd(原位NHC)电催化剂催化的CO(1atm)的苯酚与CO(1atm)电化学羰基化为碳酸二苯酯(DPC)的影响。负载在碳材料(Au /碳)上的Au是均质Pd电催化剂氧化的有效阳极。测试了各种碳材料,如Vulcan XC-72炭黑(XC72),活性炭,科琴黑和石墨烯纳米片(石墨烯-1,-2,-3)作为Au的载体。 Au /石墨烯3是形成DPC的最有效阳极。研究了金载量和还原剂(H-2和NaBH4)对Au /石墨烯3阳极反应对DPC形成的影响,并使用XRD和TEM分析对材料进行了表征。这些实验事实表明,石墨烯表面的小Au颗粒优于Pd(原位NHC)电催化剂进行DPC合成。

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