Density Functional Theory for Electrocatalysis

被引:0
作者
Xiaobin Liao [1 ]
Ruihu Lu [1 ]
Lixue Xia [1 ]
Qian Liu [2 ]
Huan Wang [3 ]
Kristin Zhao [4 ]
Zhaoyang Wang [1 ]
Yan Zhao [1 ,5 ]
机构
[1] State Key Laboratory of Silicate Materials for Architectures, International School of Materials Science and Engineering, Wuhan University of Technology
[2] Zhejiang University
[3] State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Center of Smart Materials and Devices, School of Materials Science and Engineering, Wuhan University of Technology
[4] Lynbrook High School
[5] The Institute of Technological Sciences, Wuhan University
关键词
D O I
暂无
中图分类号
O641.1 [化学键理论]; O643.36 [催化剂];
学科分类号
070304 ; 081704 ; 081705 ;
摘要
It is a considerably promising strategy to produce fuels and high-value chemicals through an electrochemical conversion process in the green and sustainable energy systems. Catalysts for electrocatalytic reactions, including hydrogen evolution reaction(HER), oxygen evolution reaction(OER), oxygen reduction reaction(ORR), nitrogen reduction reaction(NRR), carbon dioxide reduction reaction(CO2 RR), play a significant role in the advanced energy conversion technologies, such as water splitting devices, fuel cells, and rechargeable metal-air batteries. Developing low-cost and highly efficient electrocatalysts is closely related to establishing the composition–structure–activity relationships and fundamental understanding of catalytic mechanisms.Density functional theory(DFT) is emerging as an important computational tool that can provide insights into the relationship between the electrochemical performances and physical/chemical properties of catalysts.This article presents a review on the progress of the DFT, and the computational simulations, within the framework of DFT, for the electrocatalytic processes, as well as the computational designs and virtual screenings of new electrocatalysts. Some useful descriptors and analysis tools for evaluating the electrocatalytic performances are highlighted, including formation energies, d-band model, scaling relation, egorbital occupation, and free energies of adsorption. Furthermore, the remaining questions and perspectives for the development of DFT for electrocatalysis are also proposed.
引用
收藏
页码:157 / 185
页数:29
相关论文
共 281 条
[31]   Methane dehydrogenation on Au/Ni surface alloys - a first-principles study [J].
Huang, Yucheng ;
Du, Jinyan ;
Ling, Chongyi ;
Zhou, Tao ;
Wang, Sufang .
CATALYSIS SCIENCE & TECHNOLOGY, 2013, 3 (05) :1343-1354
[32]   Screened-exchange density functionals with broad accuracy for chemistry and solid-state physics [J].
Peverati, Roberto ;
Truhlar, Donald G. .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2012, 14 (47) :16187-16191
[33]   A Density Functional with Spherical Atom Dispersion Terms [J].
Austin, Amy ;
Petersson, George A. ;
Frisch, Michael J. ;
Dobek, Frank J. ;
Scalmani, Giovanni ;
Throssell, Kyle .
JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2012, 8 (12) :4989-5007
[34]   Assessing the performance of recent density functionals for bulk solids [J].
Csonka, Gabor I. ;
Perdew, John P. ;
Ruzsinszky, Adrienn ;
Philipsen, Pier H. T. ;
Lebegue, Sebastien ;
Paier, Joachim ;
Vydrov, Oleg A. ;
Angyan, Janos G. .
PHYSICAL REVIEW B, 2009, 79 (15)
[35]   Accurate Molecular Van Der Waals Interactions from Ground-State Electron Density and Free-Atom Reference Data [J].
Tkatchenko, Alexandre ;
Scheffler, Matthias .
PHYSICAL REVIEW LETTERS, 2009, 102 (07)
[36]   A functional of the one-body-reduced density matrix derived from the homogeneous electron gas: Performance for finite systems [J].
Lathiotakis, N. N. ;
Helbig, N. ;
Zacarias, A. ;
Gross, E. K. U. .
JOURNAL OF CHEMICAL PHYSICS, 2009, 130 (06)
[37]   Calculation of the lattice constant of solids with semilocal functionals [J].
Haas, Philipp ;
Tran, Fabien ;
Blaha, Peter .
PHYSICAL REVIEW B, 2009, 79 (08)
[38]   Highly Accurate First-Principles Benchmark Data Sets for the Parametrization and Validation of Density Functional and Other Approximate Methods. Derivation of a Robust, Generally Applicable, Double-Hybrid Functional for Thermochemistry and Thermochemical Kinetics [J].
Karton, Amir ;
Tarnopolsky, Alex ;
Lamere, Jean-Francois ;
Schatz, George C. ;
Martin, Jan M. L. .
JOURNAL OF PHYSICAL CHEMISTRY A, 2008, 112 (50) :12868-12886
[39]   Long-range corrected hybrid density functionals with damped atom-atom dispersion corrections [J].
Chai, Jeng-Da ;
Head-Gordon, Martin .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2008, 10 (44) :6615-6620
[40]   Scaling relationships for adsorption energies on transition metal oxide, sulfide, and nitride surfaces [J].
Fernandez, Eva M. ;
Moses, Poul G. ;
Toftelund, Anja ;
Hansen, Heine A. ;
Martinez, Jose I. ;
Abild-Pedersen, Frank ;
Kleis, Jesper ;
Hinnemann, Berit ;
Rossmeisl, Jan ;
Bligaard, Thomas ;
Norskov, Jens K. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2008, 47 (25) :4683-4686