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Graphene-Based Nanomaterials as Heterogeneous Acid Catalysts: A Comprehensive Perspective

期刊

MOLECULES
卷 19, 期 9, 页码 14582-14614

出版社

MDPI
DOI: 10.3390/molecules190914582

关键词

heterogeneous acid catalysis; nanomaterials; graphene; graphene oxide; sulfonation; sulfation; green chemistry

资金

  1. National Tsing Hua University [102N1807E1]
  2. Ministry of Science and Technology of Taiwan [NSC101-2113-M-007-006-MY3]

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Acid catalysis is quite prevalent and probably one of the most routine operations in both industrial processes and research laboratories worldwide. Recently, graphene, a two dimensional single-layer carbon sheet with hexagonal packed lattice structure, imitative of nanomaterials, has shown great potential as alternative and eco-friendly solid carbocatalyst for a variety of acid-catalyzed reactions. Owing to their exceptional physical, chemical, and mechanical properties, graphene-based nanomaterials (G-NMs) offer highly stable Bronsted acidic sites, high mass transfer, relatively large surface areas, water tolerant character, and convenient recoverability as well as recyclability, whilst retaining high activity in acid-catalyzed chemical reactions. This comprehensive review focuses on the chemistry of G-NMs, including their synthesis, characterization, properties, functionalization, and up-to-date applications in heterogeneous acid catalysis. In line with this, in certain instances readers may find herein some criticisms that should be taken as constructive and would be of value in understanding the scope and limitations of current approaches utilizing graphene and its derivatives for the same.

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