合成气
电合成
胺气处理
电化学
化学
无机化学
催化作用
材料科学
化学工程
电极
有机化学
物理化学
工程类
作者
Nannan Meng,Cuibo Liu,Yang Liu,Yifu Yu,Bin Zhang
标识
DOI:10.1002/anie.201913003
摘要
Abstract Efficient electrochemical reduction of CO 2 and H 2 O into industrial syngas with tunable CO/H 2 ratios, especially integrated with anodic organic synthesis to replace the low‐value oxygen evolution reaction (OER), is highly desirable. Here, integration of controllable partial substitution of zinc (Zn) with amine incorporation into CdS‐amine inorganic‐organic hybrids is used to generate highly efficient electrocatalysts for synthesizing syngas with tunable CO/H 2 ratios (0–19.7), which are important feedstocks for the Fischer–Tropsch process. Diethylenetriamine could enhance the adsorption and accelerate the activation of CO 2 to form the key intermediate COOH* for CO formation. Zn substitution promoted the hydrogen evolution reaction (HER), leading to tunable CO/H 2 ratios. Importantly, syngas and dihydroisoquinoline can be simultaneously synthesized by pairing with anodic semi‐oxidation of tetrahydroisoquinoline in a Zn x Cd 1− x S‐Amine ∥ Ni 2 P two‐electrode electrolyzer.
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