详细信息
Universal Skeleton Feature of the Three-Dimensional Volcano Surface and the Thermodynamic Rule in Locating the Catalyst in Heterogeneous Catalysis ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:Universal Skeleton Feature of the Three-Dimensional Volcano Surface and the Thermodynamic Rule in Locating the Catalyst in Heterogeneous Catalysis
作者:Lai, Zhuangzhuang[1,2];Chen, Jianfu[1,2];Jia, Menglei[1,2];Hu, Peijun[1,2,3];Wang, Haifeng[1,2]
机构:[1]East China Univ Sci & Technol, Ctr Computat Chem, Key Lab Adv Mat, Sch Chem & Mol Engn, Shanghai 200237, Peoples R China;[2]East China Univ Sci & Technol, Res Inst Ind Catalysis, Sch Chem & Mol Engn, Shanghai 200237, Peoples R China;[3]Queens Univ Belfast, Sch Chem & Chem Engn, Belfast BT9 5AG, Antrim, North Ireland
年份:2022
卷号:12
期号:1
起止页码:247
外文期刊名:ACS CATALYSIS
收录:;EI(收录号:20220111411312);WOS:【SCI-EXPANDED(收录号:WOS:000733775900001)】;
基金:This project was supported by the National Key R&D Program of China (2021YFA1500700 and 2018YFA0208602), NSFC (21873028, 91945302, and 92045303), the National Ten Thousand Talent Program for Young Top-notch Talents in China, the Shanghai ShuGuang project (17SG30), and the Fundamental Research Funds for the Central Universities.
语种:英文
外文关键词:heterogeneous catalysis; 3D volcano surface; catalytic kinetics; catalyst design; first-principles calculation
摘要:Constructing a three-dimensional volcano surface (3DVS) that has been a primary focus in the evaluation of activity for complex heterogeneous catalytic systems relies normally on heavy time-consuming first-principles calculations under specific conditions. Therefore, theoretically revealing the universal kinetic characteristics of a 3DVS will greatly facilitate the understanding of overall activity trends among different catalysts and provide guidance to the rational design of catalysts. Herein, we report a systematic theoretical elucidation on the origin of the intricate kinetic characteristics of a 3DVS in the framework of a generalized three-step consecutive reaction model, revealing that the 3DVS can be divided into six slope zones and a summit zone bound by three kinetic feature lines (KFLs) and three thermodynamic feature lines (TFLs), where KFLs are relevant with the reaction type and local configuration of the catalyst surface, while TFLs are only determined by the gas-phase thermodynamics of reactants/products (R/P). Remarkably, the position of these feature lines can be quantitatively formulated, which can be used to quickly sketch the outline of the 3DVS. More importantly, the summit of the 3DVS is found to locate in a "thermodynamic window" simply estimated with the chemical potential of R/P, and the best catalyst can be roughly located by following a basic thermodynamic rule. Moreover, starting with a given catalyst candidate, a general catalyst optimization direction for how to approach the summit of 3DVS, named as a ridge-following scheme, is quantitatively discussed. The theoretical understandings derived from this work could contribute to the efficient design of heterogeneous catalysts.
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