4.5 Review

A recent trend: application of graphene in catalysis

Journal

CARBON LETTERS
Volume 31, Issue 2, Pages 177-199

Publisher

SPRINGER JAPAN KK
DOI: 10.1007/s42823-020-00200-7

Keywords

Catalysis; Graphene; Oxygen reduction reaction; Water splitting; Water treatment; Fischer– Tropsch synthesis

Funding

  1. S&T Innovation 2025 Major Special Programme [2018B10022]
  2. Ningbo Natural Science Foundation Programme - Ningbo Science and Technology Bureau, China [2018A610069]
  3. UNNC FoSE Faculty Inspiration Grant, China (PCH2020)
  4. Zhejiang Provincial Department of Science and Technology [2020E10018]

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Graphene, a 2D carbon allotrope, has revolutionized research and development in various disciplines due to its unrivaled characteristics. Its growing application in catalysis has been able to increase reaction reactivity and selectivity. With its unique properties, graphene provides new possibilities for designing fit-for-purpose graphene-based catalysts, and its application in catalysis is expected to grow significantly in the future.
Graphene, an allotrope of carbon in 2D structure, has revolutionised research, development and application in various disciplines since its successful isolation 16 years ago. The single layer of sp(2)-hybridised carbon atoms brings with it a string of unrivalled characteristics at a fraction of the price of its competitors, including platinum, gold and silver. More recently, there has been a growing trend in the application of graphene in catalysis, either as metal-free catalysts, composite catalysts or as catalyst supports. The unique and extraordinary properties of graphene have rendered it useful in increasing the reactivity and selectivity of some reactions. Owing to its large surface area, outstanding adsorptivity and high compatibility with various functional groups, graphene is able to provide a whole new level of possibilities and flexibilities to design and synthesise fit-for-purpose graphene-based catalysts for specific applications. This review is focussed on the progress, mechanisms and challenges of graphene application in four main reactions, i.e., oxygen reduction reaction, water splitting, water treatment and Fischer-Tropsch synthesis. This review also summarises the advantages and drawbacks of graphene over other commonly used catalysts. Given the inherent nature of graphene, coupled with its recent accelerated advancement in the synthesis and modification processes, it is anticipated that the application of graphene in catalysis will grow exponentially from its current stage of infancy.

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