Combined High-Throughput DFT and ML Screening of Transition Metal Nitrides for Electrochemical CO2 Reduction

被引:24
作者
Yohannes, Asfaw G. [1 ]
Lee, Chaehyeon [2 ]
Talebi, Pooya [1 ]
Mok, Dong Hyeon [2 ]
Karamad, Mohammadreza [3 ]
Back, Seoin [2 ]
Siahrostami, Samira [1 ]
机构
[1] Univ Calgary, Dept Chem, Calgary, AB T2N 1N4, Canada
[2] Sogang Univ, Inst Emergent Mat, Dept Chem & Biomol Engn, Seoul 04107, South Korea
[3] Univ Calgary, Dept Phys & Astron, Calgary, AB T2N 1N4, Canada
基金
新加坡国家研究基金会;
关键词
transition metal nitrides (TMNs); CO2 andCO reduction reaction; density functional theory (DFT) calculations; high-throughput calculations; machine learning (ML); TOTAL-ENERGY CALCULATIONS; OXYGEN REDUCTION; CARBON-DIOXIDE; ELECTROREDUCTION; ELECTRODES; METHANE; GRAPHENE; TRENDS; FUEL;
D O I
10.1021/acscatal.3c01249
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Theelectrochemical reduction of CO2 (CO2RR) usingrenewable electricity has the potential to reduceatmosphericCO(2) levels while producing valuable chemicals and fuels.However, the practical implementation of this technology is limitedby the activity, selectivity, and stability of catalyst materials.In this study, we employ high-throughput density functional theory(DFT) calculations to screen & SIM;800 transition metal nitridesand identify potential catalysts for CO2RR. The stabilityand activity of the screened materials were thoroughly evaluated viathermodynamic analysis, revealing Co, Cr, and Ti transition metalnitrides as the most promising candidates. Additionally, we conducta feature importance analysis using machine learning (ML) regressionmodels for binding energy prediction and determine the primary factorsinfluencing the stability of catalysts. We show that the group numberof metals has a significant impact on the binding energy of *OH andthus on the stability of the catalysts. We anticipate that this combinedapproach of high-throughput DFT screening and design strategy derivedfrom ML regression analysis could effectively lead to the discoveryof improved energy materials.
引用
收藏
页码:9007 / 9017
页数:11
相关论文
共 50 条
  • [41] Transition Metal-Depleted Graphenes for Electrochemical Applications via Reduction of CO2 by Lithium
    Poh, Hwee Ling
    Sofer, Zdenek
    Luxa, Jan
    Pumera, Martin
    SMALL, 2014, 10 (08) : 1529 - 1535
  • [42] Evaluating the selectivity of CO2 reduction reaction on elementary metal particles with DFT calculations
    Wang, Qiang
    Li, Jiarong
    Liu, Yi
    Su, Peixian
    Zhou, Zhaohui
    SURFACES AND INTERFACES, 2024, 52
  • [43] The role of morphology on the electrochemical CO2 reduction performance of transition metal-based catalysts
    Mustapha, Umar
    Nnadiekwe, Chidera C.
    Alhaboudal, Maria Abdulkarim
    Yunusa, Umar
    Abdullahi, AbdulHakam Shafiu
    Abdulazeez, Ismail
    Hussain, Ijaz
    Ganiyu, Saheed A.
    Al-Saadi, Abdulaziz A.
    Alhooshani, Khalid
    JOURNAL OF ENERGY CHEMISTRY, 2023, 85 : 198 - 219
  • [44] High throughput screening of M3C2 MXenes for efficient CO2 reduction conversion into hydrocarbon fuels
    Xiao, Yi
    Zhang, Weibin
    NANOSCALE, 2020, 12 (14) : 7660 - 7673
  • [45] Electrochemical Reduction of CO2 on Metal-Nitrogen-Doped Carbon Catalysts
    Sofia Varela, Ana
    Ju, Wen
    Bagger, Alexander
    Franco, Patricio
    Rossmeisl, Jan
    Strasser, Peter
    ACS CATALYSIS, 2019, 9 (08): : 7270 - 7284
  • [46] Two-dimensional pyrite supported transition metal for highly-efficient electrochemical CO2 reduction: A theoretical screening study
    Yang, Yingju
    Liu, Jing
    Wu, Dawei
    Ding, Junyan
    Xiong, Bo
    CHEMICAL ENGINEERING JOURNAL, 2021, 424
  • [47] Phase engineering of metal nanocatalysts for electrochemical CO2 reduction
    Zhai, Yanjie
    Han, Peng
    Yun, Qinbai
    Ge, Yiyao
    Zhang, Xiao
    Chen, Ye
    Zhang, Hua
    ESCIENCE, 2022, 2 (05): : 467 - 485
  • [48] Electrochemical CO2 and CO Reduction on Metal-Functionalized Porphyrin-like Graphene
    Tripkovic, Vladimir
    Vanin, Marco
    Karamad, Mohammedreza
    Bjorketun, Marten E.
    Jacobsen, Karsten W.
    Thygesen, Kristian S.
    Rossmeisl, Jan
    JOURNAL OF PHYSICAL CHEMISTRY C, 2013, 117 (18) : 9187 - 9195
  • [49] High-Throughput Screening of Atomic Defects in MXenes for CO2 Capture, Activation, and Dissociation
    Parey, Vanshree
    Abraham, B. Moses
    Mir, Showkat H.
    Singh, Jayant K.
    ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (30) : 35585 - 35594
  • [50] High-density Ag nanosheets for selective electrochemical CO2 reduction to CO
    Yan, Shenglin
    Chen, Chengzhen
    Zhang, Fanghua
    Mahyoub, Samah A.
    Cheng, Zhenmin
    NANOTECHNOLOGY, 2021, 32 (16)