Rational Modulation of Single Atom Coordination Microenvironments in a BCN Monolayer for Multifunctional Electrocatalysis

Single-atom (SA) catalysts (SACs) have demonstrated outstanding catalytic performances toward plenty of relevant electrochemical reactions. Nevertheless, controlling the coordination microenvironment of catalytically active SAs to further enhance their catalytic oerformences has remained elusive up to now. Herein, a systematic investigation of 20 transition metal atoms that are coordinated with 20 different microenvironments in a boroncarbon-nitride monolayer (BCN) is conducted using high-throughput density functional theory calculations. The experimentally synthesized ternary BCN monolayer contains carbon, nitrogen, and boron atoms in its 2D network, thus providing a lot of new coordination environments than those of the current CxNy nanoplatforms. By exploring the structural/electrochemical stability, catalytic activity, selectivity, and electronic properties of 400 (20 × 20) TM-BCN moieties, it is discovered that specific SA coordination environments can achieve superior stability and selectivity for different electrocatalytic reactions. Moreover, a universal descriptor to accelerate the experimental process toward the synthesis of BCN-SACs is reported. These findings not only provide useful guidance for the synthesis of efficient multifunctional BCN-SACs but also will immediately benefit researchers by levering up their understanding of the mechanistic effects of SA coordination microenvironments on electrocatalytic reactions. © 2023 Wiley-VCH GmbH.

Авторы
He T. , Kong Y. , Zhou T. , Zhang J. , Santiago A.R.P. , Du A. , Luque R. , Liu Q.
Журнал
Издательство
Wiley-VCH Verlag
Номер выпуска
42
Язык
Английский
Статус
Опубликовано
Номер
2302429
Том
19
Год
2023
Организации
  • 1 Yunnan Key Laboratory for Micro/Nano Materials & Technology, National Center for International Research on Photoelectric and Energy Materials, School of Materials and Energy, Yunnan University, Kunming, 650091, China
  • 2 Department of Physics and Electronic Engineering, Yancheng Teachers University, Yancheng, 224002, China
  • 3 Walker Department of Mechanical Engineering, The University of Texas at Austin, Austin, 78712, TX, United States
  • 4 School of Chemistry and Physics and Centre for Material Science, Faculty of Science, Queensland University of Technology, Gardens Point Campus, Brisbane, 4001, QLD, Australia
  • 5 Department of Organic Chemistry University of Cordoba Campus de Rabanales Edificio Marie Curie (C-3), Ctra Nnal IV-A, Km 396, Cordoba, E14014, Spain
  • 6 Peoples Friendship University of Russia (RUDN University) 6 Miklukho-Maklaya str, Moscow, 117198, Russian Federation
Ключевые слова
boron–carbon-nitride (BCN) monolayers; coordination microenvironments; high-throughput calculation; multifunctional electrocatalysis; stability descriptors
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