The Emergence and Evolution of Borophene
Abstract Neighboring carbon and sandwiched between non‐metals and metals in the periodic table of the elements, boron is one of the most chemically and physically versatile elements, and can be manipulated to form dimensionally low planar structures (borophene) with intriguing properties. Herein, th...
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doaj-05ea1e8e0abe4732b020e74a87ac2a4e2021-06-24T15:51:37ZengWileyAdvanced Science2198-38442021-06-01812n/an/a10.1002/advs.202001801The Emergence and Evolution of BoropheneMeitong Ou0Xuan Wang1Liu Yu2Chuang Liu3Wei Tao4Xiaoyuan Ji5Lin Mei6School of Pharmaceutical Sciences (Shenzhen) Sun Yat‐sen University Guangzhou 510275 P. R. ChinaSchool of Pharmaceutical Sciences (Shenzhen) Sun Yat‐sen University Guangzhou 510275 P. R. ChinaSchool of Pharmaceutical Sciences (Shenzhen) Sun Yat‐sen University Guangzhou 510275 P. R. ChinaCenter for Nanomedicine and Department of Anesthesiology Brigham and Women's Hospital Harvard Medical School Boston MA 02115 USACenter for Nanomedicine and Department of Anesthesiology Brigham and Women's Hospital Harvard Medical School Boston MA 02115 USASchool of Pharmaceutical Sciences (Shenzhen) Sun Yat‐sen University Guangzhou 510275 P. R. ChinaSchool of Pharmaceutical Sciences (Shenzhen) Sun Yat‐sen University Guangzhou 510275 P. R. ChinaAbstract Neighboring carbon and sandwiched between non‐metals and metals in the periodic table of the elements, boron is one of the most chemically and physically versatile elements, and can be manipulated to form dimensionally low planar structures (borophene) with intriguing properties. Herein, the theoretical research and experimental developments in the synthesis of borophene, as well as its excellent properties and application in many fields, are reviewed. The decade‐long effort toward understanding the size‐dependent structures of boron clusters and the theory‐directed synthesis of borophene, including bottom‐up approaches based on different foundations, as well as up‐down approaches with different exfoliation modes, and the key factors influencing the synthetic effects, are comprehensively summarized. Owing to its excellent chemical, electronic, mechanical, and thermal properties, borophene has shown great promise in supercapacitor, battery, hydrogen‐storage, and biomedical applications. Furthermore, borophene nanoplatforms used in various biomedical applications, such as bioimaging, drug delivery, and photonic therapy, are highlighted. Finally, research progress, challenges, and perspectives for the future development of borophene in large‐scale production and other prospective applications are discussed.https://doi.org/10.1002/advs.202001801biomedical applicationsborophenegraphene analoguessynthesis2D nanomaterials |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Meitong Ou Xuan Wang Liu Yu Chuang Liu Wei Tao Xiaoyuan Ji Lin Mei |
spellingShingle |
Meitong Ou Xuan Wang Liu Yu Chuang Liu Wei Tao Xiaoyuan Ji Lin Mei The Emergence and Evolution of Borophene Advanced Science biomedical applications borophene graphene analogues synthesis 2D nanomaterials |
author_facet |
Meitong Ou Xuan Wang Liu Yu Chuang Liu Wei Tao Xiaoyuan Ji Lin Mei |
author_sort |
Meitong Ou |
title |
The Emergence and Evolution of Borophene |
title_short |
The Emergence and Evolution of Borophene |
title_full |
The Emergence and Evolution of Borophene |
title_fullStr |
The Emergence and Evolution of Borophene |
title_full_unstemmed |
The Emergence and Evolution of Borophene |
title_sort |
emergence and evolution of borophene |
publisher |
Wiley |
series |
Advanced Science |
issn |
2198-3844 |
publishDate |
2021-06-01 |
description |
Abstract Neighboring carbon and sandwiched between non‐metals and metals in the periodic table of the elements, boron is one of the most chemically and physically versatile elements, and can be manipulated to form dimensionally low planar structures (borophene) with intriguing properties. Herein, the theoretical research and experimental developments in the synthesis of borophene, as well as its excellent properties and application in many fields, are reviewed. The decade‐long effort toward understanding the size‐dependent structures of boron clusters and the theory‐directed synthesis of borophene, including bottom‐up approaches based on different foundations, as well as up‐down approaches with different exfoliation modes, and the key factors influencing the synthetic effects, are comprehensively summarized. Owing to its excellent chemical, electronic, mechanical, and thermal properties, borophene has shown great promise in supercapacitor, battery, hydrogen‐storage, and biomedical applications. Furthermore, borophene nanoplatforms used in various biomedical applications, such as bioimaging, drug delivery, and photonic therapy, are highlighted. Finally, research progress, challenges, and perspectives for the future development of borophene in large‐scale production and other prospective applications are discussed. |
topic |
biomedical applications borophene graphene analogues synthesis 2D nanomaterials |
url |
https://doi.org/10.1002/advs.202001801 |
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