Applications
1 Chen Z. J.; Mao, Y.; Chen, J. F.; Wang, H.-F.; Li, Y. D.; Hu, P. Understanding the Dual Active Sites of the FeO/Pt(111) Interface and Reaction Kinetics: Density Functional Theory Study on Methanol Oxidation to Formaldehyde. ACS Catal. 2017, 7, 7, 4281–4290.
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2 Yuan, H. Y.; Sun, N. N.; Chen, J. F.; Jin, J. M.; Wang, H.-F.; Hu, P. Insight into the NH3-Assisted Selective Catalytic Reduction of NO on β-MnO2(110): Reaction Mechanism, Activity Descriptor, and Evolution from a Pristine State to a Steady State. ACS Catal. 2018, 8, 9269−9279.
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3 Yuan, H. Y.; Chen, J. F.; Wang, H.-F.; Hu, P. Activity Trend for Low-Concentration NO Oxidation at Room Temperature on Rutile-Type Metal Oxides. ACS Catal. 2018, 8, 10864−10870.
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4 Yuan, H. Y.; Chen, J. F.; Guo, Y. L.; Wang, H.-F.; Hu, P. Insight into the Superior Catalytic Activity of MnO2 for Low-Content NO Oxidation at Room Temperature. J. Phys. Chem. C 2018, 122, 25365−25373.
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5 Yang M. X.; Yuan, H. Y.; Wang, H.-F.; Hu, P. Insights into the selective catalytic reduction of NO by NH3 over Mn3O4(110): a DFT study coupled with microkinetic analysis. Sci China Chem, 2018, 61: 457–467.
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6 Wang, D.; Sheng, T.; Chen, J. F. ; Wang, H.-F.; Hu, P. Identifying the key obstacle in photocatalytic oxygen evolution on rutile TiO2. Nat. Catal. 2018, 1, 291–299.
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7 Jin, J. M.; Chen, J. F.; Wang, H.-F.; Hu, P. Insight into room-temperature catalytic oxidation of NO by CrO2(110): A DFT study. Chinese Chemical Letters, 2019, 30, 3, 618-623.
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8 Guo C. X.; Mao, Y.; Yao Z. H.; Chen, J. F.; Hu, P. Examination of the key issues in microkinetics: CO oxidation on Rh(1 1 1). J. Catal. 2019, 379, 52-59.
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9 Chen, J. F.; Mao, Y.; Wang, H.-F.; Hu, P. A Simple Method To Locate the Optimal Adsorption Energy for the Best Catalysts Directly. ACS Catal. 2019, 9, 2633−2638.
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10 Chen, J. F.; Mao, Y.; Wang, H.-F.; Hu, P. Reversibility Iteration Method for Understanding Reaction Networks and for Solving Microkinetics in Heterogeneous Catalysis. ACS Catal. 2016, 6, 7078−7087.
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