Content area

Abstract

The redox property of the ultrasmall coinage nanoclusters (with several to tens of Au/Ag atoms) has elucidated the electron-transfer capacity of nanoclusters, and has been successfully utilized in a variety of redox conversions (such as from CO2 to CO). Nevertheless, their biological applications are mainly restricted by the scarcity of atomically precise, water-soluble metal nanoclusters, and the limited application (mainly on the decomposition of H2O2 in these days). Herein, mercaptosuccinic acid (MSA) protected ultrasmall alloy AuAg nanoclusters were prepared, and the main product was determined [Au3Ag5(MSA)3] by electrospray ionization mass spectrometry (ESI-MS). The clusters can not only mediate the decomposition of H2O2 to generate hydroxyl radicals, but is also able to mediate the reduction of nicotinamide adenine dinucleotide (NAD) to its reduced form of NADH. This is the first time that the atomically precise metal nanoclusters were used to mediate the coenzyme reduction. The preliminary mechanistic insights imply the reaction to be driven by the hydrogen bonding between the carboxylic groups (on the surface of MSA) and the amino N—H bonds (on NAD). In this context, the presence of the carboxylic groups, the sub-nanometer size regime (∼ 1 nm), and the synergistic effect of the Au-Ag clusters are pre-requisite to the NAD reduction.

Details

Title
Nicotinamide adenine dinucleotide (NAD+) reduction enabled by an atomically precise Au-Ag alloy nanocluster
Author
Chen, Ling 1 ; Du, Yonglei 2 ; Lv, Ying 2 ; Fan, Daoqing 2 ; Wu, Junfei 2 ; Wu, Lingbao 2 ; Cui, Mengting 2 ; Yu, Haizhu 1 ; Zhu, Manzhou 2 

 Anhui University, Department of Chemistry and Centre for Atomic Engineering of Advanced Materials, Key Laboratory of Structure and Functional Regulation of Hybrid Materials of Physical Science and Information Technology and Anhui Province Key Laboratory of Chemistry for Inorganic/Organic Hybrid Functionalized Materials, Hefei, China (GRID:grid.252245.6) (ISNI:0000 0001 0085 4987); Hefei Comprehensive National Science Center, Institute of Energy, Hefei, China (GRID:grid.513034.0) 
 Anhui University, Department of Chemistry and Centre for Atomic Engineering of Advanced Materials, Key Laboratory of Structure and Functional Regulation of Hybrid Materials of Physical Science and Information Technology and Anhui Province Key Laboratory of Chemistry for Inorganic/Organic Hybrid Functionalized Materials, Hefei, China (GRID:grid.252245.6) (ISNI:0000 0001 0085 4987) 
Publication title
Nano Research; Beijing
Volume
16
Issue
5
Pages
7770-7776
Publication year
2023
Publication date
May 2023
Publisher
Tsinghua University Press
Place of publication
Beijing
Country of publication
China
Publication subject
ISSN
19980124
e-ISSN
19980000
Source type
Scholarly Journal
Language of publication
English
Document type
Journal Article
Publication history
 
 
Online publication date
2023-02-16
Milestone dates
2023-02-15 (Registration); 2022-11-19 (Received); 2022-12-16 (Accepted); 2022-12-13 (Rev-Recd)
Publication history
 
 
   First posting date
16 Feb 2023
ProQuest document ID
2817259477
Document URL
https://www.proquest.com/scholarly-journals/nicotinamide-adenine-dinucleotide-nad-sup/docview/2817259477/se-2?accountid=208611
Copyright
© Tsinghua University Press 2023.
Last updated
2024-10-03
Database
ProQuest One Academic