Cargando…

Improved Hydrogen Generation of Al-H(2)O Reaction by BiOX (X = Halogen) and Influence Rule

In this work, three additives BiOX (BiOI, BiOBr, and BiOF) for Al-H(2)O reaction have been synthesized using chemical methods. SEM analysis shows that the structure of BiOF is nanoparticles, while BiOBr and BiOI have flower-like structures composed of nanosheets. Then, Al-BiOI, Al-BiOBr, and Al-BiOF...

Descripción completa

Detalles Bibliográficos
Autores principales: Liao, Lumin, Liu, Jiaxi, Wang, Tao, Xu, Fen, Sun, Lixian, Zhou, Tianhao, Wu, Jinfan, Guan, Yanxun, Luo, Yumei, Zou, Yongjin, Chu, Hailiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9692649/
https://www.ncbi.nlm.nih.gov/pubmed/36431682
http://dx.doi.org/10.3390/ma15228199
_version_ 1784837320398077952
author Liao, Lumin
Liu, Jiaxi
Wang, Tao
Xu, Fen
Sun, Lixian
Zhou, Tianhao
Wu, Jinfan
Guan, Yanxun
Luo, Yumei
Zou, Yongjin
Chu, Hailiang
author_facet Liao, Lumin
Liu, Jiaxi
Wang, Tao
Xu, Fen
Sun, Lixian
Zhou, Tianhao
Wu, Jinfan
Guan, Yanxun
Luo, Yumei
Zou, Yongjin
Chu, Hailiang
author_sort Liao, Lumin
collection PubMed
description In this work, three additives BiOX (BiOI, BiOBr, and BiOF) for Al-H(2)O reaction have been synthesized using chemical methods. SEM analysis shows that the structure of BiOF is nanoparticles, while BiOBr and BiOI have flower-like structures composed of nanosheets. Then, Al-BiOI, Al-BiOBr, and Al-BiOF composites have been prepared using the ball milling method. The effect of halogen ions on the performance of hydrogen generation from Al hydrolysis has been explored. The results indicate that the conversion yields of Al-BiOBr, Al-BiOI, and Al-BiOF for hydrogen generation are 96.3%, 95.3%, and 8.9%, respectively. In particular, the maximum hydrogen generation rate (MHGR) of Al-BiOI is as high as 3451.8 mL g(−1) min(−1), eight times higher than that of Al-BiOBr. Furthermore, the influence rule of BiOX (X = F, Cl, Br, and I) on Al-H(2)O reaction has been studied using density functional theory. The results illustrate that HI can be more easily adsorbed on the Al surface as compared with HF, HCl, and HBr. Meanwhile, the bond length between halogen ions and the Al atom increased in the order of F(−), Cl(−), Br(−), and I(−). Therefore, the dissociation of I(−) from the Al surface becomes easier and will expose more active sites to enhance the reaction activity of Al. In summary, the BiOI has the most favorable performance to Al-H(2)O reaction.
format Online
Article
Text
id pubmed-9692649
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96926492022-11-26 Improved Hydrogen Generation of Al-H(2)O Reaction by BiOX (X = Halogen) and Influence Rule Liao, Lumin Liu, Jiaxi Wang, Tao Xu, Fen Sun, Lixian Zhou, Tianhao Wu, Jinfan Guan, Yanxun Luo, Yumei Zou, Yongjin Chu, Hailiang Materials (Basel) Article In this work, three additives BiOX (BiOI, BiOBr, and BiOF) for Al-H(2)O reaction have been synthesized using chemical methods. SEM analysis shows that the structure of BiOF is nanoparticles, while BiOBr and BiOI have flower-like structures composed of nanosheets. Then, Al-BiOI, Al-BiOBr, and Al-BiOF composites have been prepared using the ball milling method. The effect of halogen ions on the performance of hydrogen generation from Al hydrolysis has been explored. The results indicate that the conversion yields of Al-BiOBr, Al-BiOI, and Al-BiOF for hydrogen generation are 96.3%, 95.3%, and 8.9%, respectively. In particular, the maximum hydrogen generation rate (MHGR) of Al-BiOI is as high as 3451.8 mL g(−1) min(−1), eight times higher than that of Al-BiOBr. Furthermore, the influence rule of BiOX (X = F, Cl, Br, and I) on Al-H(2)O reaction has been studied using density functional theory. The results illustrate that HI can be more easily adsorbed on the Al surface as compared with HF, HCl, and HBr. Meanwhile, the bond length between halogen ions and the Al atom increased in the order of F(−), Cl(−), Br(−), and I(−). Therefore, the dissociation of I(−) from the Al surface becomes easier and will expose more active sites to enhance the reaction activity of Al. In summary, the BiOI has the most favorable performance to Al-H(2)O reaction. MDPI 2022-11-18 /pmc/articles/PMC9692649/ /pubmed/36431682 http://dx.doi.org/10.3390/ma15228199 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liao, Lumin
Liu, Jiaxi
Wang, Tao
Xu, Fen
Sun, Lixian
Zhou, Tianhao
Wu, Jinfan
Guan, Yanxun
Luo, Yumei
Zou, Yongjin
Chu, Hailiang
Improved Hydrogen Generation of Al-H(2)O Reaction by BiOX (X = Halogen) and Influence Rule
title Improved Hydrogen Generation of Al-H(2)O Reaction by BiOX (X = Halogen) and Influence Rule
title_full Improved Hydrogen Generation of Al-H(2)O Reaction by BiOX (X = Halogen) and Influence Rule
title_fullStr Improved Hydrogen Generation of Al-H(2)O Reaction by BiOX (X = Halogen) and Influence Rule
title_full_unstemmed Improved Hydrogen Generation of Al-H(2)O Reaction by BiOX (X = Halogen) and Influence Rule
title_short Improved Hydrogen Generation of Al-H(2)O Reaction by BiOX (X = Halogen) and Influence Rule
title_sort improved hydrogen generation of al-h(2)o reaction by biox (x = halogen) and influence rule
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9692649/
https://www.ncbi.nlm.nih.gov/pubmed/36431682
http://dx.doi.org/10.3390/ma15228199
work_keys_str_mv AT liaolumin improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT liujiaxi improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT wangtao improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT xufen improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT sunlixian improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT zhoutianhao improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT wujinfan improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT guanyanxun improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT luoyumei improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT zouyongjin improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule
AT chuhailiang improvedhydrogengenerationofalh2oreactionbybioxxhalogenandinfluencerule