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Renaissance of elemental phosphorus materials: properties, synthesis, and applications in sustainable energy and environment.

Authors :
Tian, Haijiang
Wang, Jiahong
Lai, Gengchang
Dou, Yanpeng
Gao, Jie
Duan, Zunbin
Feng, Xiaoxiao
Wu, Qi
He, Xingchen
Yao, Linlin
Zeng, Li
Liu, Yanna
Yang, Xiaoxi
Zhao, Jing
Zhuang, Shulin
Shi, Jianbo
Qu, Guangbo
Yu, Xue-Feng
Chu, Paul K.
Jiang, Guibin
Source :
Chemical Society Reviews; 8/21/2023, Vol. 52 Issue 16, p5388-5484, 97p
Publication Year :
2023

Abstract

The polymorphism of phosphorus-based materials has garnered much research interest, and the variable chemical bonding structures give rise to a variety of micro and nanostructures. Among the different types of materials containing phosphorus, elemental phosphorus materials (EPMs) constitute the foundation for the synthesis of related compounds. EPMs are experiencing a renaissance in the post-graphene era, thanks to recent advancements in the scaling-down of black phosphorus, amorphous red phosphorus, violet phosphorus, and fibrous phosphorus and consequently, diverse classes of low-dimensional sheets, ribbons, and dots of EPMs with intriguing properties have been produced. The nanostructured EPMs featuring tunable bandgaps, moderate carrier mobility, and excellent optical absorption have shown great potential in energy conversion, energy storage, and environmental remediation. It is thus important to have a good understanding of the differences and interrelationships among diverse EPMs, their intrinsic physical and chemical properties, the synthesis of specific structures, and the selection of suitable nanostructures of EPMs for particular applications. In this comprehensive review, we aim to provide an in-depth analysis and discussion of the fundamental physicochemical properties, synthesis, and applications of EPMs in the areas of energy conversion, energy storage, and environmental remediation. Our evaluations are based on recent literature on well-established phosphorus allotropes and theoretical predictions of new EPMs. The objective of this review is to enhance our comprehension of the characteristics of EPMs, keep abreast of recent advances, and provide guidance for future research of EPMs in the fields of chemistry and materials science. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03060012
Volume :
52
Issue :
16
Database :
Complementary Index
Journal :
Chemical Society Reviews
Publication Type :
Academic Journal
Accession number :
169952408
Full Text :
https://doi.org/10.1039/d2cs01018f