Dendritic Solid Polymer Electrolytes: A New Paradigm for High‐Performance Lithium‐Based Batteries

Author:

Zhang Lei1,Wang Shi123ORCID,Wang Qian4,Shao Huaiyu5,Jin Zhong3

Affiliation:

1. School of Materials and Chemical Engineering Chuzhou University 1528 Fengle Avenue Chuzhou 239099 China

2. State Key Laboratory of Organic Electronics & Information Displays (SKLOEID) Institute of Advanced Materials (IAM) Nanjing University of Posts & Telecommunications 9 Wenyuan Road Nanjing 210023 China

3. State Key Laboratory of Coordination Chemistry MOE Key Laboratory of Mesoscopic Chemistry MOE Key Laboratory of High‐Performance Polymer Materials and Technology Jiangsu Key Laboratory of Advanced Organic Materials School of Chemistry & Chemical Engineering Nanjing University Nanjing 210023 China

4. Institute of Energy Innovation College of Materials Science and Engineering Taiyuan University of Technology Taiyuan 030024 China

5. Institute of Applied Physics and Materials Engineering (IAPME) University of Macau N23‐4022, Avenida da Universidad, Taipa Maca 519000 China

Abstract

AbstractLi‐ions battery is widely used and recognized, but its energy density based on organic electrolytes has approached the theoretical upper limit, while the use of organic electrolytes also brings some safety hazards (leakage and flammability). Polymer electrolytes (PEs) are expected to fundamentally solve the safety problem and improve energy density. Therefore, Li‐ions battery based on solid PE has become a research hotspot in recent years. However, low ionic conductivity and poor mechanical properties, as well as a narrow electrochemical window limit its further development. Dendritic PEs with unique topology structure has low crystallinity, high segmental mobility, and reduced chain entanglement, providing a new avenue for designing high‐performance PEs. In this review, the basic concept and synthetic chemistry of dendritic polymers are first introduced. Then, this story will turn to how to balance the mechanical properties, ionic conductivity, and electrochemical stability of dendritic PEs from synthetic chemistry. In addition, accomplishments on dendritic PEs based on different synthesis strategies and recent advances in battery applications are summarized and discussed. Subsequently, the ionic transport mechanism and interfacial interaction are deeply analyzed. In the end, the challenges and prospects are outlined to promote further development in this booming field.

Funder

Natural Science Foundation of Jiangsu Province

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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