电催化剂
绝热过程
可再生能源
催化作用
密度泛函理论
纳米技术
动力学蒙特卡罗方法
生化工程
材料科学
惰性
能量转换
蒙特卡罗方法
计算机科学
计算化学
化学
热力学
物理化学
电化学
电极
有机化学
物理
工程类
电气工程
统计
数学
作者
Yawei Li,Siew Hwa Chan,Qiang Sun
出处
期刊:Nanoscale
[Royal Society of Chemistry]
日期:2015-01-01
卷期号:7 (19): 8663-8683
被引量:344
摘要
The conversion of CO2 into fuels and useful chemicals has been intensively pursued for renewable, sustainable and green energy. However, due to the negative adiabatic electron affinity (EA) and large ionization potential (IP), the CO2 molecule is chemically inert, thus making the conversion difficult under normal conditions. Novel catalysts, which have high stability, superior efficiency and low cost, are urgently needed to facilitate the conversion. As the first step to design such catalysts, understanding the mechanisms involved in CO2 conversion is absolutely indispensable. In this review, we have summarized the recent theoretical progress in mechanistic studies based on density functional theory, kinetic Monte Carlo simulation, and microkinetics modeling. We focus on reaction channels, intermediate products, the key factors determining the conversion of CO2 in solid–gas interface thermocatalytic reduction and solid–liquid interface electrocatalytic reduction. Furthermore, we have proposed some possible strategies for improving CO2 electrocatalysis and also discussed the challenges in theory, model construction, and future research directions.
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