Hexaazatriphenylene Based Polyimide with Dense Dual Redox Sites as a High‐Performance Organic Cathode for Lithium‐Ion Batteries

Author:

Xu Pengfei1,Gao Feng2,Liu Dong1ORCID

Affiliation:

1. State Key Laboratory of Organic−Inorganic Composites College of Chemical Engineering Beijing University of Chemical Technology Beijing 100029 P. R. China

2. Key Laboratory of Carbon Fiber and Functional Polymers Ministry of Education Beijing University of Chemical Technology Beijing 100029 P. R. China

Abstract

AbstractOrganic polymers are promising candidates as cathode materials for lithium storage, however, suffer from low theoretical capacity due to the presence of multiple inactive components in the polymers. Herein, a novel hexaazatriphenylene‐based polyimide with high theoretical capacity (436 mAh g−1) is developed via the precise design of monomers and controllable synthesis of corresponding polymers. The as‐prepared polymers possess rich edge pyrazine nitrogen (C═N) and carbonyl groups (C═O), well‐defined porosity, and conjugated structure, benefiting for high capacity, rapid ion and charge transport. The resultant polymers electrode achieves a high specific capacity of 303 mAh g−1 at 100 mA g−1, high‐rate capability (171 mAh g−1 even at 8 C, 1 C = 400 mA g−1), and stable cycle performance with a high capacity retention of 93.8% at 500 mA g−1 over 200 cycles. Combined experimental and theoretical calculations reveal that both C═O and C═N sites in the polyimide are served as redox sites for lithium storage, providing high specific capacity. This work offers a novel approach for the development of polymeric cathode materials with dense redox sites for next‐generation energy‐dense batteries.

Funder

National Natural Science Foundation of China

Beijing University of Chemical Technology

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

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