In situ preparation of Al@3-Perfluorohexyl-1, 2-epoxypropane@glycidyl azide polymer (Al@PFHP@GAP) high-energy material
Publication type: Journal Article
Publication date: 2022-12-01
scimago Q1
wos Q1
SJR: 2.696
CiteScore: 20.6
Impact factor: 13.2
ISSN: 13858947, 18733212
General Chemistry
General Chemical Engineering
Industrial and Manufacturing Engineering
Environmental Chemistry
Abstract
• PFHP and GAP were firstly coated on the surface of Al to form Al@PFHP@GAP. • Al@PFHP@GAP had both the advantages of organic fluoride and GAP. • Al@PFHP@GAP exhibited excellent combustion performance. • The combustion heat of Al@PFHP@GAP was increased by 6.3%, compared with raw Al. Fluoride coating can reduce the ignition temperature, enhance the burning rate and inhibit the agglomeration of aluminum powder. However, the addition of non-energetic fluoride can reduce the energy of aluminum powder. In this study, for the first time, 3-Perfluorohexyl-1, 2-epoxypropane (PFHP) was coated on the surface of aluminum powder, which reacted with glycidyl azide polymer (GAP) in situ to form core-shell Al@PFHP@GAP. Compared with raw aluminum powder, Al@PFHP@GAP not only significantly reduced ignition temperature (about 150 ℃), but also greatly improved the combustion efficiency (from 87.7% to 97.6%). Besides, the heat of combustion was also greatly increased by 6.3%, compared with that of raw aluminum powder. Such performances were outstanding among the existing coated Al. In addition, the formation of coating shell effectively improved the hydrophobicity and corrosion resistance of the aluminum powder. In a word, our derived Al@PFHP@GAP provided a novel rationale for aluminum powder with greatly enhanced combustion performance.
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Total citations:
33
Citations from 2024:
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(72.72%)
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Zhang L. et al. In situ preparation of Al@3-Perfluorohexyl-1, 2-epoxypropane@glycidyl azide polymer (Al@PFHP@GAP) high-energy material // Chemical Engineering Journal. 2022. Vol. 450. p. 137118.
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Zhang L., Su X., Wang S., Li X., Zou M. In situ preparation of Al@3-Perfluorohexyl-1, 2-epoxypropane@glycidyl azide polymer (Al@PFHP@GAP) high-energy material // Chemical Engineering Journal. 2022. Vol. 450. p. 137118.
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TY - JOUR
DO - 10.1016/j.cej.2022.137118
UR - https://doi.org/10.1016/j.cej.2022.137118
TI - In situ preparation of Al@3-Perfluorohexyl-1, 2-epoxypropane@glycidyl azide polymer (Al@PFHP@GAP) high-energy material
T2 - Chemical Engineering Journal
AU - Zhang, Lichen
AU - Su, Xinjie
AU - Wang, Shuo
AU - Li, Xiaodong
AU - Zou, Meishuai
PY - 2022
DA - 2022/12/01
PB - Elsevier
SP - 137118
VL - 450
SN - 1385-8947
SN - 1873-3212
ER -
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@article{2022_Zhang,
author = {Lichen Zhang and Xinjie Su and Shuo Wang and Xiaodong Li and Meishuai Zou},
title = {In situ preparation of Al@3-Perfluorohexyl-1, 2-epoxypropane@glycidyl azide polymer (Al@PFHP@GAP) high-energy material},
journal = {Chemical Engineering Journal},
year = {2022},
volume = {450},
publisher = {Elsevier},
month = {dec},
url = {https://doi.org/10.1016/j.cej.2022.137118},
pages = {137118},
doi = {10.1016/j.cej.2022.137118}
}