» Articles » PMID: 28745889

Nanosheet Supported Single-Metal Atom Bifunctional Catalyst for Overall Water Splitting

Overview
Journal Nano Lett
Specialty Biotechnology
Date 2017 Jul 27
PMID 28745889
Citations 26
Authors
Affiliations
Soon will be listed here.
Abstract

Nanosheet supported single-atom catalysts (SACs) can make full use of metal atoms and yet entail high selectivity and activity, and bifunctional catalysts can enable higher performance while lowering the cost than two separate unifunctional catalysts. Supported single-atom bifunctional catalysts are therefore of great economic interest and scientific importance. Here, on the basis of first-principles computations, we report a design of the first single-atom bifunctional eletrocatalyst, namely, isolated nickel atom supported on β boron monolayer (Ni/β-BM), to achieve overall water splitting. This nanosheet supported SAC exhibits remarkable electrocatalytic performance with the computed overpotential for oxygen/hydrogen evolution reaction being just 0.40/0.06 V. The ab initio molecular dynamics simulation shows that the SAC can survive up to 800 K elevated temperature, while enacting a high energy barrier of 1.68 eV to prevent isolated Ni atoms from clustering. A viable experimental route for the synthesis of Ni/β-BM SAC is demonstrated from computer simulation. The desired nanosheet supported single-atom bifunctional catalysts not only show great potential for achieving overall water splitting but also offer cost-effective opportunities for advancing clean energy technology.

Citing Articles

Theoretical study of a CuCo dual-atom catalyst for nitrogen fixation.

Han M, Zhang Y, Zhang C RSC Adv. 2024; 14(47):34893-34903.

PMID: 39483387 PMC: 11526819. DOI: 10.1039/d4ra06077f.


Influence of deposition conditions on performance of NiS as the bifunctional electrocatalyst in alkaline solutions by galvanostatic deposition.

Zhu M, Liu M, Zhang J RSC Adv. 2024; 14(41):29800-29811.

PMID: 39301239 PMC: 11410004. DOI: 10.1039/d4ra04667f.


First-Principles Investigation on the Tunable Electronic Structures and Photocatalytic Properties of AlN/ScCF and GaN/ScCF Heterostructures.

Liu M, Lu Y, Song J, Ma B, Qiu K, Bai L Molecules. 2024; 29(14).

PMID: 39064882 PMC: 11279752. DOI: 10.3390/molecules29143303.


Constructing regulable supports via non-stoichiometric engineering to stabilize ruthenium nanoparticles for enhanced pH-universal water splitting.

Zhao S, Hung S, Deng L, Zeng W, Xiao T, Li S Nat Commun. 2024; 15(1):2728.

PMID: 38553434 PMC: 10980754. DOI: 10.1038/s41467-024-46750-6.


Descriptor for CN-Supported Single-Cluster Catalysts in Bifunctional Oxygen Evolution and Reduction Reactions.

Pan J, Li M, Filot I, Wang H, Hensen E, Zhang L J Phys Chem Lett. 2024; 15(7):2066-2074.

PMID: 38358260 PMC: 10895691. DOI: 10.1021/acs.jpclett.3c03573.