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Size‐Controlled Boron‐Based Bifunctional Photocathodes for High‐Efficiency Photo‐Assisted Li–O(2) Batteries

Photo‐assisted Li–O(2) batteries are introduced as a promising strategy for reducing severe overpotential by directly employing photocathodes. Herein, a series of size‐controlled single‐element boron photocatalysts are prepared by the meticulous liquid phase thinning methods by combining probe and w...

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Autores principales: Li, Ling, Ma, Fuquan, Jia, Congying, Li, Qi, He, Xuexia, Sun, Jie, Jiang, Ruibin, Lei, Zhibin, Liu, Zong‐Huai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10401084/
https://www.ncbi.nlm.nih.gov/pubmed/37195010
http://dx.doi.org/10.1002/advs.202301682
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author Li, Ling
Ma, Fuquan
Jia, Congying
Li, Qi
He, Xuexia
Sun, Jie
Jiang, Ruibin
Lei, Zhibin
Liu, Zong‐Huai
author_facet Li, Ling
Ma, Fuquan
Jia, Congying
Li, Qi
He, Xuexia
Sun, Jie
Jiang, Ruibin
Lei, Zhibin
Liu, Zong‐Huai
author_sort Li, Ling
collection PubMed
description Photo‐assisted Li–O(2) batteries are introduced as a promising strategy for reducing severe overpotential by directly employing photocathodes. Herein, a series of size‐controlled single‐element boron photocatalysts are prepared by the meticulous liquid phase thinning methods by combining probe and water bath sonication, and their bifunctional photocathodes in the photo‐assisted Li–O(2) batteries are systematically investigated. The boron‐based Li–O(2) batteries have shown incremental round‐trip efficiencies as the sized reduction of boron under illumination. It is noteworthy that the completely amorphous boron nanosheets (B(4)) photocathode not only delivers an optimizing round‐trip efficiency of 190% on the basis of the ultra‐high discharge voltage (3.55 V) and ultra‐low charge voltage (1.87 V) but also gives a high rate performance and ultralong durability with a round‐trip efficiency of 133% after 100 cycles (200 h) compared with the other‐sized boron photocathodes. This remarkable photoelectric performance of the B(4) sample can be attracted to the synergistic effect on the suitable semiconductor property, high conductivity, and strengthened catalytic ability of boron nanosheets coated with ultrathin amorphous boron‐oxides overlayer. This research can open a new avenue to facilitate the rapid development of high‐efficiency photo‐assisted Li–O(2) batteries.
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spelling pubmed-104010842023-08-05 Size‐Controlled Boron‐Based Bifunctional Photocathodes for High‐Efficiency Photo‐Assisted Li–O(2) Batteries Li, Ling Ma, Fuquan Jia, Congying Li, Qi He, Xuexia Sun, Jie Jiang, Ruibin Lei, Zhibin Liu, Zong‐Huai Adv Sci (Weinh) Research Articles Photo‐assisted Li–O(2) batteries are introduced as a promising strategy for reducing severe overpotential by directly employing photocathodes. Herein, a series of size‐controlled single‐element boron photocatalysts are prepared by the meticulous liquid phase thinning methods by combining probe and water bath sonication, and their bifunctional photocathodes in the photo‐assisted Li–O(2) batteries are systematically investigated. The boron‐based Li–O(2) batteries have shown incremental round‐trip efficiencies as the sized reduction of boron under illumination. It is noteworthy that the completely amorphous boron nanosheets (B(4)) photocathode not only delivers an optimizing round‐trip efficiency of 190% on the basis of the ultra‐high discharge voltage (3.55 V) and ultra‐low charge voltage (1.87 V) but also gives a high rate performance and ultralong durability with a round‐trip efficiency of 133% after 100 cycles (200 h) compared with the other‐sized boron photocathodes. This remarkable photoelectric performance of the B(4) sample can be attracted to the synergistic effect on the suitable semiconductor property, high conductivity, and strengthened catalytic ability of boron nanosheets coated with ultrathin amorphous boron‐oxides overlayer. This research can open a new avenue to facilitate the rapid development of high‐efficiency photo‐assisted Li–O(2) batteries. John Wiley and Sons Inc. 2023-05-17 /pmc/articles/PMC10401084/ /pubmed/37195010 http://dx.doi.org/10.1002/advs.202301682 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Li, Ling
Ma, Fuquan
Jia, Congying
Li, Qi
He, Xuexia
Sun, Jie
Jiang, Ruibin
Lei, Zhibin
Liu, Zong‐Huai
Size‐Controlled Boron‐Based Bifunctional Photocathodes for High‐Efficiency Photo‐Assisted Li–O(2) Batteries
title Size‐Controlled Boron‐Based Bifunctional Photocathodes for High‐Efficiency Photo‐Assisted Li–O(2) Batteries
title_full Size‐Controlled Boron‐Based Bifunctional Photocathodes for High‐Efficiency Photo‐Assisted Li–O(2) Batteries
title_fullStr Size‐Controlled Boron‐Based Bifunctional Photocathodes for High‐Efficiency Photo‐Assisted Li–O(2) Batteries
title_full_unstemmed Size‐Controlled Boron‐Based Bifunctional Photocathodes for High‐Efficiency Photo‐Assisted Li–O(2) Batteries
title_short Size‐Controlled Boron‐Based Bifunctional Photocathodes for High‐Efficiency Photo‐Assisted Li–O(2) Batteries
title_sort size‐controlled boron‐based bifunctional photocathodes for high‐efficiency photo‐assisted li–o(2) batteries
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10401084/
https://www.ncbi.nlm.nih.gov/pubmed/37195010
http://dx.doi.org/10.1002/advs.202301682
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