arrow
Return

Metal boride-decorated CoNi layered double hydroxides supported on muti-walled carbon nanotubes as efficient hydrolysis catalysts for sodium borohydride

delete2023-01-01
delete17
delete
OA
AI
X
Xiaoshuang Luo
孙立贤 (Lixian Sun)
徐芬 (Fen Xu) *
曹忠 (Zhong Cao) *
J
Ju‐Lan Zeng
Y
Yiting Bu
C
Chenchen Zhang
Y
Yongpeng Xia
Y
Yongjin Zou
K
Kexiang Zhang
H
Hongge Pan
DOI:10.1016/j.jallcom.2022.167339delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Without effective and secure hydrogen production, it is impossible to utilize hydrogen energy on a large scale. Whereas hydrogen emission from NaBH4 hydrolysis with high hydrogen yield is an impressively efficient hydrogen supply method. However, it is affected by sluggish hydrogen production kinetics and low yields, therefore it is required to develop hydrolysis catalysts with good performance under alkaline con-ditions. In this study, a composite of unique CoNi layered double hydroxide (CoNi-LDH) nanosheets in-terconnected by muti-walled carbon nanotubes (MWCNTs) was prepared for the first time, and the surface was modified with metal borides produced by in-situ reduction. Among them, CoNi-LDH nanosheets are created when CoNi-MOF spontaneously derivates in alkaline electrolytes. The successful preparation of CoB-LDH-CNT has been confirmed by SEM, TEM, EDS, XRD, and XPS characterization. The hydrolysis ex-periments show that it has good catalytic activity with an optimal hydrogen generation rate (HGR) of 5167.72 mLmiddotmin-1middotg-1 and low activation energy (Ea) of 29.93 kJmiddotmol-1. After ten cycles of experiments, it still has 75.4% of the initial performance, showing excellent stability, which may be attributed to the fact that MWCNTs can help to reconnect broken nanosheets during the reaction. This interconnected multistage structure offers a new methodology for enhancing the catalytic performance of metal boride and metal hydroxide materials.(c) 2022 Published by Elsevier B.V.
Keywords:
Layered double hydroxide
MWCNTs
In-situ reduction
NaBH4
Hydrolysis
Catalytic activity
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Journal of Alloys and Compounds cover
Journal of Alloys and Compounds
IF:
6.3
Papers:
8.3W
Citations:
24.3W

Organization

G
Guilin University of Electronic Technology
Scholars:
7.4K
Papers: 5.2K
Citations: 5.4K