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Lithium Borohydride Nanorods: Self-Assembling Growth and Remarkable Hydrogen Cycling Properties.

作者信息

Zhang Wenxuan, Zhou Linming, Zhang Xin, Huang Zhenguo, Fang Fang, Hong Zijian, Li Juan, Gao Mingxia, Sun Wenping, Pan Hongge, Liu Yongfeng

机构信息

State Key Laboratory of Silicon and Advanced Semiconductor Materials and School of Materials Science and Engineering, Zhejiang University, Hangzhou, 310027, China.

Taizhou Institute of Zhejiang University, Taizhou, 318000, China.

出版信息

Small. 2024 Aug;20(32):e2400965. doi: 10.1002/smll.202400965. Epub 2024 Mar 20.

DOI:10.1002/smll.202400965
PMID:38506595
Abstract

Nanostructured metal hydrides with unique morphology and improved hydrogen storage properties have attracted intense interests. However, the study of the growth process of highly active borohydrides remains challenging. Herein, for the first time the synthesis of LiBH nanorods through a hydrogen-assisted one-pot solvothermal reaction is reported. Reaction of n-butyl lithium with triethylamine borane in n-hexane under 50 bar of H at 40-100 °C gives rise to the formation of the [100]-oriented LiBH nanorods with 500-800 nm in diameter, whose growth is driven by orientated attachment and ligand adsorption. The unique morphology enables the LiBH nanorods to release hydrogen from ≈184 °C, 94 °C lower than the commercial sample (≈278 °C). Hydrogen release amounts to 13 wt% within 40 min at 450 °C with a stable cyclability, remarkably superior to the commercial LiBH (≈9.1 wt%). More importantly, up to 180 °C reduction in the onset temperature of hydrogenation is successfully attained by the nanorod sample with respect to the commercial counterpart. The LiBH nanorods show no foaming during dehydrogenation, which improves the hydrogen cycling performance. The new approach will shed light on the preparation of nanostructured metal borohydrides as advanced functional materials.

摘要

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