Interweaving Covalent Organic Polymer Chains Into Two‐Dimensional Networks: Synthesis, Single Crystal Structure, and Application for Stabilizing Lithium Metal Anode

Author:

He Lizhong12,Naren Tuoya13,Zhang Lei1,Kang Fangyuan1,Yang Jinglun1,Chen Zihao1,Yu Aimin4,Li Dong‐Sheng5,Chen Libao3,Zhang Qichun167

Affiliation:

1. Department of Materials Science and Engineering City University of Hong Kong Tat Chee Avenue Kowloon Tong Hong Kong SAR P.R. China

2. School of Materials Science & Engineering Xi'an Polytechnic University Xi'an 710048 P.R. China

3. State Key Laboratory of Powder Metallurgy Central South University Changsha 410083 P.R. China

4. Department of Chemistry and Biotechnology Swinburne University of Technology Hawthorn VIC 3122 Australia

5. College of Materials and Chemical Engineering Key Laboratory of Inorganic Nonmetallic Crystalline and Energy Conversion Materials China Three Gorges University Yichang 443002 P.R. China

6. Department of Chemistry Center of Super‐Diamond and Advanced Films (COSDAF) & Hong Kong Institute of Clean Energy (HKICE) City University of Hong Kong Hong Kong SAR 999077 P.R. China

7. City University of Hong Kong Shenzhen Research Institute Shenzhen Guangdong 518057 P.R. China

Abstract

AbstractMacroscopic weaving has been proven to be the most enduring and effective method for manufacturing fabrics to meet the practical needs of humanity for thousands of years. However, the construction of molecular structures with exquisite topologies and specific properties based on molecular weaving is still in its infancy. Herein, we designed and fabricated a two‐dimensional (2D) woven covalent organic polymer (COP) network (named as CityU‐46) driven by the dative N→B bonds between the 1,4‐bis(benzodioxa‐borole)benzene (BACT) and 2,5‐bis(4‐pyridyl)‐1,3,4‐thiadiazole (BPT). The complex woven topology of CityU‐46 was determined using a single‐crystal X‐ray diffraction technique, revealing that it features a well‐defined two‐over and two‐under interweaving pattern at the molecular level. Due to its structural merits, CityU‐46 can be used as an artificial organic solid‐electrolyte interphase layer on the surface of Li metal anodes, significantly improving the stability and long‐term performance of lithium metal cells.

Funder

City University of Hong Kong

National Natural Science Foundation of China

Shenzhen Science and Technology Innovation Program

China Postdoctoral Science Foundation

Higher Education Discipline Innovation Project

Publisher

Wiley

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