Rapid template‐guided ligand‐free synthesis of ultrasmall Pt nanoclusters with efficient hydrogen evolution reaction activity and their versatile release

Bibliographic Details
Title: Rapid template‐guided ligand‐free synthesis of ultrasmall Pt nanoclusters with efficient hydrogen evolution reaction activity and their versatile release
Authors: Lizhen Chen, Shoaib Azeem, Mingbo Ruan, Weilin Xu, Almut Barck, Andreas Kornowski, Wolfgang J. Parak, Indranath Chakraborty
Source: Nano Select, Vol 2, Iss 4, Pp 758-767 (2021)
Publisher Information: Wiley-VCH, 2021.
Publication Year: 2021
Collection: LCC:Materials of engineering and construction. Mechanics of materials
Subject Terms: hydrogen evolution reaction, ligand‐free nanoclusters, platinum nanocluster, release of platinum nanoclusters, template‐guided synthesis, Materials of engineering and construction. Mechanics of materials, TA401-492
More Details: Abstract The design of ligand‐free platinum nanoclusters (PtNCs) for the field of renewable energy is still challenging. Herein, we reported a fast synthesis of ligand‐free Pt nanoclusters (NCs) by utilizing the outer defect of a representative type of zeolitic imidazolate framework (ZIF). Structural investigation suggests a homogenous distribution of the PtNCs on the outer layer of the ZIF‐8 structure. The as‐prepared PtNCs@ZIF‐8 exhibits high catalytic activity for the hydrogen evolution reaction (HER). The extremely low overpotential with 1.4 mV, high kinetic current (specific and mass activity at 50 mV), and larger exchange current density were achieved in acidic solution, better than those of the commercial 20% Pt/C catalysts under the same condition. Furthermore, the PtNCs can be extracted from the ZIF‐8 structure to both aqueous and non‐aqueous solvent, which could be further used for other systems. These findings allow for a simple route of template‐guided NC synthesis and their release.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 2688-4011
Relation: https://doaj.org/toc/2688-4011
DOI: 10.1002/nano.202000225
Access URL: https://doaj.org/article/2e1d6385b8314d128b4cc6eefb77339b
Accession Number: edsdoj.2e1d6385b8314d128b4cc6eefb77339b
Database: Directory of Open Access Journals
More Details
ISSN:26884011
DOI:10.1002/nano.202000225
Published in:Nano Select
Language:English