Dynamic Structural Evolution of Active Sites and Effect on Heterogeneous Catalysis: Theoretical Insights

The exploration of structure-activity relationships is one of the key subjects for the rational design of heterogeneous catalysts. Advancements in characterization techniques have unveiled significant geometric and electronic structural changes at active sites under working conditions. This dynamic...

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Published inChemistry, an Asian journal Vol. 20; no. 8; p. e202401762
Main Authors Chen, Zhao-Bin, Zhang, Ya-Li, Sun, Yue-Tong, Wang, Ya-Hao, Wan, Qiang, Zhou, Xiao-Shun
Format Journal Article
LanguageEnglish
Published Germany 17.04.2025
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Abstract The exploration of structure-activity relationships is one of the key subjects for the rational design of heterogeneous catalysts. Advancements in characterization techniques have unveiled significant geometric and electronic structural changes at active sites under working conditions. This dynamic nature of active sites presents a formidable challenge in determining their structure-activity relationships. Over the past decade, considerable theoretical studies have concentrated on deciphering the complex catalytic processes that occur at these dynamic active sites under working conditions, with much success in methodology, models, and mechanisms. Herein, we review key factors influencing active site evolution, such as surface adsorbates, temperature, and electrochemical potential. We also provide an overview of recent progress in understanding the effects of active site evolution on their catalytic performance. A better understanding to the dynamic evolution of active sites and corresponding effects on the catalysis under working conditions can help in the rational design of novel heterogeneous catalysts.
AbstractList The exploration of structure-activity relationships is one of the key subjects for the rational design of heterogeneous catalysts. Advancements in characterization techniques have unveiled significant geometric and electronic structural changes at active sites under working conditions. This dynamic nature of active sites presents a formidable challenge in determining their structure-activity relationships. Over the past decade, considerable theoretical studies have concentrated on deciphering the complex catalytic processes that occur at these dynamic active sites under working conditions, with much success in methodology, models, and mechanisms. Herein, we review key factors influencing active site evolution, such as surface adsorbates, temperature, and electrochemical potential. We also provide an overview of recent progress in understanding the effects of active site evolution on their catalytic performance. A better understanding to the dynamic evolution of active sites and corresponding effects on the catalysis under working conditions can help in the rational design of novel heterogeneous catalysts.
Author Chen, Zhao-Bin
Sun, Yue-Tong
Wan, Qiang
Zhang, Ya-Li
Wang, Ya-Hao
Zhou, Xiao-Shun
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  surname: Zhou
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  organization: Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, Institute of Physical Chemistry, Zhejiang Normal University, Jinhua, 321004, China
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Keywords Dynamic catalysis
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Theoretical simulation
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Snippet The exploration of structure-activity relationships is one of the key subjects for the rational design of heterogeneous catalysts. Advancements in...
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Title Dynamic Structural Evolution of Active Sites and Effect on Heterogeneous Catalysis: Theoretical Insights
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