Graphene‐based Composite Materials as Catalyst for Organic Transformations

Author:

Pandey Gayatri1,Kumar Kawar1,Singh Rajput Nitesh1,Kumar Gupta Sumit2,Pal Lamba Narendra1,Kumar Singh Brajendra3,Singh Surendra3,Bahadur Vijay45ORCID,Singh Chauhan Manmohan1

Affiliation:

1. Amity University Rajasthan Jaipur India- 303002

2. St., Wilfred's College University of Rajasthan Jaipur India- 302020

3. University of Delhi Delhi 110007 India

4. Alliance University Bangalore India- 562106

5. Department of Pharmaceutical and Pharmacological science University of Houston Houston USA- 77204

Abstract

AbstractGraphene is one of the most auspicious constituents in nanotechnology. It provides the most accurate theoretical 2‐D depiction of catalytic sustenance. Its exceptional, physico‐chemical, and mechanical qualities make it distinctive and also able to create composite materials with novel capabilities. Although using graphene as a single‐layered sheet as a catalytic tool has not been documented yet, certain encouraging outcomes using few‐layer graphene have previously been attained. We will quickly go through the most pertinent synthetic methods for obtaining graphene and graphene based materials in this article. The composites of graphene are used in various catalytic reactions, including Coupling reactions, Aza‐Michael addition, Hydration, Oxidation, Esterification, Pechmann Condensation, Knoevenagel Condensation, Ring‐Opening Polymerization, Friedel‐Crafts Addition, Ring Opening of Epoxides and Decarboxylation have been catalysed by these expertly crafted and prepared graphene‐based catalysts. The graphene based composites allows for easy, recyclable, arnold transform, and environmentally friendly photocatalysis and also mild, precise, and super effective conversions and synthesis.

Publisher

Wiley

Subject

General Chemistry

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