Two birds with one stone: large catalytic areas and abundant nitrogen sites inspired by fluorine doping contributing to CO2RR activity and selectivity

催化作用 炭黑 杂原子 选择性 氮气 碳纤维 碳化 化学 无机化学 材料科学 有机化学 吸附 复合材料 复合数 天然橡胶 戒指(化学)
作者
Hongyu Chen,Yi Zhang,Tianfang Yang,Yizhu Shang,Qiuying Zhu,Shoufu Cao,Xiujuan Lin,Siyuan Liu,Shuxian Wei,Binbin Wei,Zhaojie Wang,Xiaoqing Lü
出处
期刊:Dalton Transactions [Royal Society of Chemistry]
卷期号:51 (41): 15883-15888 被引量:12
标识
DOI:10.1039/d2dt02864f
摘要

Electroreduction of CO2 based on metal-free carbon catalysts is an attractive approach for useful products. However, it remains a great chemical challenge due to its unsatisfactory activity and poor selectivity. Here, we report a successful case to greatly improve CO2-to-CO conversion on carbon black (CB) and nitrogen-doped carbon black (N-CB). By introducing fluorine, the faradaic efficiency of CO was increased from 12.8% (CB) and 50.8% (N-CB) to 93.1% (nitrogen and fluorine co-doped carbon black, N,F-CB) at -0.7 V. A partial current density of 4.19 mA cm-2 remained durable for about 23 h. The superiority of N,F-CB can be attributed to its large catalytic areas and abundant N active sites inspired by fluorine doping. Specifically, the fluorine precursor of polyvinylidene fluoride (PVDF) firstly performs as a nitrogen fixator, protecting the catalyst from more nitrogen escaping during the carbonization treatment. The number of nitrogen sites is about 4.4 times higher than it is for the N-CB. Meanwhile, PVDF as the area extender significantly improves the catalytic area; the specific surface area and the ECSA of N,F-CB are 8.7 and 6.9 times higher than that of CB. This work provides an insight into how heteroatoms can manipulate catalytic activity and selectivity through the catalytic area of carbon materials with more active sites.
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