Two-Dimensional Black Phosphorus Nanomaterials: Emerging Advances in Electrochemical Energy Storage Science

Abstract Two-dimensional black phosphorus (2D BP), well known as phosphorene, has triggered tremendous attention since the first discovery in 2014. The unique puckered monolayer structure endows 2D BP intriguing properties, which facilitate its potential applications in various fields, such as catal...

Full description

Bibliographic Details
Main Authors: Junye Cheng, Lingfeng Gao, Tian Li, Shan Mei, Cong Wang, Bo Wen, Weichun Huang, Chao Li, Guangping Zheng, Hao Wang, Han Zhang
Format: Article
Language:English
Published: SpringerOpen 2020-09-01
Series:Nano-Micro Letters
Subjects:
Online Access:http://link.springer.com/article/10.1007/s40820-020-00510-5
id doaj-fa94df95bd8843d2a01e49572f5dd0d5
record_format Article
spelling doaj-fa94df95bd8843d2a01e49572f5dd0d52020-11-25T03:33:06ZengSpringerOpenNano-Micro Letters2311-67062150-55512020-09-0112113410.1007/s40820-020-00510-5Two-Dimensional Black Phosphorus Nanomaterials: Emerging Advances in Electrochemical Energy Storage ScienceJunye Cheng0Lingfeng Gao1Tian Li2Shan Mei3Cong Wang4Bo Wen5Weichun Huang6Chao Li7Guangping Zheng8Hao Wang9Han Zhang10Guangdong Provincial Key Laboratory of Micro/Nano Optomechatronics Engineering, College of Mechatronics and Control Engineering, Shenzhen UniversityCollaborative Innovation Center for Optoelectronic Science and Technology, International Collaborative Laboratory of 2D Materials for Optoelectronic Science and Technology of Ministry of Education and Guangdong Province, Shenzhen UniversityDepartment of Mechanical Engineering, Hong Kong Polytechnic UniversityDepartment of Materials Science and Engineering, Drexel UniversityCollaborative Innovation Center for Optoelectronic Science and Technology, International Collaborative Laboratory of 2D Materials for Optoelectronic Science and Technology of Ministry of Education and Guangdong Province, Shenzhen UniversityCollaborative Innovation Center for Optoelectronic Science and Technology, International Collaborative Laboratory of 2D Materials for Optoelectronic Science and Technology of Ministry of Education and Guangdong Province, Shenzhen UniversityNantong Key Lab of Intelligent and New Energy Materials, College of Chemistry and Chemical Engineering, Nantong UniversityCollaborative Innovation Center for Optoelectronic Science and Technology, International Collaborative Laboratory of 2D Materials for Optoelectronic Science and Technology of Ministry of Education and Guangdong Province, Shenzhen UniversityDepartment of Mechanical Engineering, Hong Kong Polytechnic UniversityGuangdong Provincial Key Laboratory of Micro/Nano Optomechatronics Engineering, College of Mechatronics and Control Engineering, Shenzhen UniversityCollaborative Innovation Center for Optoelectronic Science and Technology, International Collaborative Laboratory of 2D Materials for Optoelectronic Science and Technology of Ministry of Education and Guangdong Province, Shenzhen UniversityAbstract Two-dimensional black phosphorus (2D BP), well known as phosphorene, has triggered tremendous attention since the first discovery in 2014. The unique puckered monolayer structure endows 2D BP intriguing properties, which facilitate its potential applications in various fields, such as catalyst, energy storage, sensor, etc. Owing to the large surface area, good electric conductivity, and high theoretical specific capacity, 2D BP has been widely studied as electrode materials and significantly enhanced the performance of energy storage devices. With the rapid development of energy storage devices based on 2D BP, a timely review on this topic is in demand to further extend the application of 2D BP in energy storage. In this review, recent advances in experimental and theoretical development of 2D BP are presented along with its structures, properties, and synthetic methods. Particularly, their emerging applications in electrochemical energy storage, including Li−/K−/Mg−/Na-ion, Li–S batteries, and supercapacitors, are systematically summarized with milestones as well as the challenges. Benefited from the fast-growing dynamic investigation of 2D BP, some possible improvements and constructive perspectives are provided to guide the design of 2D BP-based energy storage devices with high performance.http://link.springer.com/article/10.1007/s40820-020-00510-52D black phosphorusElectronic structureSupercapacitorsBatteries
collection DOAJ
language English
format Article
sources DOAJ
author Junye Cheng
Lingfeng Gao
Tian Li
Shan Mei
Cong Wang
Bo Wen
Weichun Huang
Chao Li
Guangping Zheng
Hao Wang
Han Zhang
spellingShingle Junye Cheng
Lingfeng Gao
Tian Li
Shan Mei
Cong Wang
Bo Wen
Weichun Huang
Chao Li
Guangping Zheng
Hao Wang
Han Zhang
Two-Dimensional Black Phosphorus Nanomaterials: Emerging Advances in Electrochemical Energy Storage Science
Nano-Micro Letters
2D black phosphorus
Electronic structure
Supercapacitors
Batteries
author_facet Junye Cheng
Lingfeng Gao
Tian Li
Shan Mei
Cong Wang
Bo Wen
Weichun Huang
Chao Li
Guangping Zheng
Hao Wang
Han Zhang
author_sort Junye Cheng
title Two-Dimensional Black Phosphorus Nanomaterials: Emerging Advances in Electrochemical Energy Storage Science
title_short Two-Dimensional Black Phosphorus Nanomaterials: Emerging Advances in Electrochemical Energy Storage Science
title_full Two-Dimensional Black Phosphorus Nanomaterials: Emerging Advances in Electrochemical Energy Storage Science
title_fullStr Two-Dimensional Black Phosphorus Nanomaterials: Emerging Advances in Electrochemical Energy Storage Science
title_full_unstemmed Two-Dimensional Black Phosphorus Nanomaterials: Emerging Advances in Electrochemical Energy Storage Science
title_sort two-dimensional black phosphorus nanomaterials: emerging advances in electrochemical energy storage science
publisher SpringerOpen
series Nano-Micro Letters
issn 2311-6706
2150-5551
publishDate 2020-09-01
description Abstract Two-dimensional black phosphorus (2D BP), well known as phosphorene, has triggered tremendous attention since the first discovery in 2014. The unique puckered monolayer structure endows 2D BP intriguing properties, which facilitate its potential applications in various fields, such as catalyst, energy storage, sensor, etc. Owing to the large surface area, good electric conductivity, and high theoretical specific capacity, 2D BP has been widely studied as electrode materials and significantly enhanced the performance of energy storage devices. With the rapid development of energy storage devices based on 2D BP, a timely review on this topic is in demand to further extend the application of 2D BP in energy storage. In this review, recent advances in experimental and theoretical development of 2D BP are presented along with its structures, properties, and synthetic methods. Particularly, their emerging applications in electrochemical energy storage, including Li−/K−/Mg−/Na-ion, Li–S batteries, and supercapacitors, are systematically summarized with milestones as well as the challenges. Benefited from the fast-growing dynamic investigation of 2D BP, some possible improvements and constructive perspectives are provided to guide the design of 2D BP-based energy storage devices with high performance.
topic 2D black phosphorus
Electronic structure
Supercapacitors
Batteries
url http://link.springer.com/article/10.1007/s40820-020-00510-5
work_keys_str_mv AT junyecheng twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT lingfenggao twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT tianli twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT shanmei twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT congwang twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT bowen twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT weichunhuang twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT chaoli twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT guangpingzheng twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT haowang twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
AT hanzhang twodimensionalblackphosphorusnanomaterialsemergingadvancesinelectrochemicalenergystoragescience
_version_ 1724564605198401536