Citation:
FANG Yahui, LIU Zhipan. Insight into the Important Electrochemical Reactions from First-Principles Calcualtions[J]. Chinese Journal of Catalysis,
;2019, 40(s1): 90-97.
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The development of electrochemistry theory dates back more than a century, from the Gouy-Chapman-Stern (GCS) double layer, phenomenological Tafel kinetics to the classical charge transfer Marcus theory and to the First-Principles simulations. The recent years have seen the rapid development in the application of first principles density functional theory (DFT) simulation on the solid/liquid interface. This article reviews the current theoretical methods for electrochemistry modelling, i.e simple thermodynamic method, periodic continuum solvation method (DFT/CM-MPB) and quantum mechanics molecular dynamics (QMMD). These methods have been applied to provide the atomic level insights into the nature of electrochemical double layer, charge transfer and the potential~current curve of electrocatalytic reaction. Despite these progresses, there is plenty of room for the new design and the improvement of theoretical methods for better describing the complex solid/liquid interface and the reaction therein.
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[3]
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[4]
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[5]
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[6]
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[7]
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[8]
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[9]
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[10]
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[11]
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[12]
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[13]
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[14]
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[15]
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[16]
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[17]
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[18]
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[19]
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[20]
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[21]
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[22]
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[23]
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[24]
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[25]
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[26]
-
[27]
-
[28]
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[29]
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[30]
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[31]
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[32]
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[33]
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[34]
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[35]
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[36]
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[37]
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[38]
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[39]
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[40]
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[41]
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[42]
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[43]
-
[44]
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[45]
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[46]
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[47]
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[48]
-
[49]
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[50]
-
[51]
-
[52]
-
[53]
-
[54]
-
[55]
-
[56]
-
[57]
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[58]
-
[59]
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[60]
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[61]
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[62]
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[63]
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