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Õ÷¸åÖ÷Ì⣺Single-Atom Electrocatalysis
Frontiers in chemistryÊÇÖпÆÔº¶þÇøºÍjcr¶þÇøÆÚ¿¯£¬ÏÖ¿ªÉèר¿¯¡°Single-Atom Electrocatalysis¡±ÒÔ¹Ø×¢µç´ß»¯ÎªÖÐÐĵÄÄÜÔ´»·¾³·½ÃæµÄÓ¦ÓÃÇ°ÑØ£¬ÎªÏà¹ØÁìÓòµÄ·¢Õ¹Ìṩ½è¼øºÍ²Î¿¼¡£É¨Âë½øÈë
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Electrocatalysis plays an important role in diverse electrochemical energy conversion processes that are vital for improving energy utilization efficiency and mitigating the aggravating global warming challenge. However, the electrochemical performances of the various systems are limited by inappropriate electrocatalysts. At present, there is an intensive search for highly efficient electrocatalysts by more rational control over the size, shape, composition, and structure. Of particular interest are the studies on single-atom catalysts, which have sparked new interests in electrocatalysis because of their high catalytic activity, stability, selectivity, and 100 % atom utilization. In addition, the development of synthetic techniques and methodologies for single-atom catalysts materials have recently gained a significant increase in interest.

The goal of this Research Topic is to advance our understanding of the role of single-atom catalysts materials in energy conversion. It is necessary for recent developments and progress of relative research to be summarized first. The advancement of single-atom catalysts materials in the fields of electrochemical water splitting, CO2/CO reduction reaction, 2e- oxygen-reduction reaction (to produce H2O2), nitrogen reduction reaction, relative energy conversion devices, and synthetic techniques and methodologies will be explored. For the future of single-atom catalysts materials for energy conversion, Perspectives can be put forward as well.

The aim of the current Research Topic is to cover promising, recent, and novel research trends in the field of single-atom catalysts materials for energy conversion. The Topic Editors welcome submissions of Original Research, Review, Mini Review, and Perspective articles on areas that may include, but are not limited to:
• Development of synthetic methodologies and characterization techniques towards single-atom catalysts materials;
• Single-atom catalysts materials for electrochemical water splitting;
• Single-atom catalysts materials for electrochemical CO2/CO reduction reaction;
• Single-atom catalysts materials for electrochemical 2e- oxygen-reduction reaction (to produce H2O2);
• Single-atom catalysts materials for electrochemical nitrogen reduction reaction;
• Development of electrocatalysis devices towards single-atom catalysts materials.

Keywords: Single-Atom Catalysts; Electrocatalysis; Energy Conversion; High Efficiency
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Weiguang Ma
Dalian Maritime University
Dalian, China£»

Moulay Tahar Sougrati
UMR5253 Institut de chimie mol¨¦culaire et des mat¨¦riaux Charles Gerhardt Montpellier (ICGM)
Montpellier, France£»

Junhu Wang
Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences
Dalian, China£»

Raphael Nagao
Institute of Chemistry, State University of Campinas
Campinas, Brazil

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