Recent Progress on Ligand-Protected Metal Nanoclusters in Photocatalysis

Author:

Mathew Meegle S.12,Krishnan Greeshma1,Mathews Amita Aanne1ORCID,Sunil Kevin1,Mathew Leo1,Antoine Rodolphe3ORCID,Thomas Sabu1

Affiliation:

1. School of Energy Materials, Mahatma Gandhi University, Kottayam 686560, India

2. Research and Post Graduate Department of Chemistry, Mar Athanasius College, Kothamangalam 686666, India

3. Institut Lumière Matière UMR 5306, Univ Lyon, Université Claude Bernard Lyon 1, CNRS, F-69100 Villeurbanne, France

Abstract

The reckless use of non-replenishable fuels by the growing population for energy and the resultant incessant emissions of hazardous gases and waste products into the atmosphere have insisted that scientists fabricate materials capable of managing these global threats at once. In recent studies, photocatalysis has been employed to focus on utilizing renewable solar energy to initiate chemical processes with the aid of semiconductors and highly selective catalysts. A wide range of nanoparticles has showcased promising photocatalytic properties. Metal nanoclusters (MNCs) with sizes below 2 nm, stabilized by ligands, show discrete energy levels and exhibit unique optoelectronic properties, which are vital to photocatalysis. In this review, we intend to compile information on the synthesis, true nature, and stability of the MNCs decorated with ligands and the varying photocatalytic efficiency of metal NCs concerning changes in the aforementioned domains. The review discusses the photocatalytic activity of atomically precise ligand-protected MNCs and their hybrids in the domain of energy conversion processes such as the photodegradation of dyes, the oxygen evolution reaction (ORR), the hydrogen evolution reaction (HER), and the CO2 reduction reaction (CO2RR).

Funder

UGC as DR DS Kothari Postdoctoral Fellowship

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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