Issue 2, 2023

Metallene-related materials for electrocatalysis and energy conversion

Abstract

As a member of graphene analogs, metallenes are a class of two-dimensional materials with atomic thickness and well-controlled surface atomic arrangement made of metals or alloys. When utilized as catalysts, metallenes exhibit distinctive physicochemical properties endowed from the under-coordinated metal atoms on the surface, making them highly competitive candidates for energy-related electrocatalysis and energy conversion systems. Significantly, their catalytic activity can be precisely tuned through the chemical modification of their surface and subsurface atoms for efficient catalyst engineering. This minireview summarizes the recent progress in the synthesis and characterization of metallenes, together with their use as electrocatalysts toward reactions for energy conversion. In the Synthesis section, we pay particular attention to the strategies designed to tune their exposed facets, composition, and surface strain, as well as the porosity/cavity, defects, and crystallinity on the surface. We then discuss the electrocatalytic properties of metallenes in terms of oxygen reduction, hydrogen evolution, alcohol and acid oxidation, carbon dioxide reduction, and nitrogen reduction reaction, with a small extension regarding photocatalysis. At the end, we offer perspectives on the challenges and opportunities with respect to the synthesis, characterization, modeling, and application of metallenes.

Graphical abstract: Metallene-related materials for electrocatalysis and energy conversion

Article information

Article type
Minireview
Submitted
29 sen 2022
Accepted
06 dek 2022
First published
07 dek 2022

Mater. Horiz., 2023,10, 407-431

Author version available

Metallene-related materials for electrocatalysis and energy conversion

M. Xie, S. Tang, B. Zhang and G. Yu, Mater. Horiz., 2023, 10, 407 DOI: 10.1039/D2MH01213H

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