Peng Xi, Zhou Yangmei, Chen Binhua, Cao Wenju, Sun Caihong, Liao Yao, Huang Xingying, Tu Xiaojian, Chen Zhi, Liu Wei, Gao Ping
Key Laboratory of Environmentally Friendly Chemistry and Applications of Ministry of Education, College of Chemistry, Xiangtan University, Xiangtan411105, China.
College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, Guangdong 518060, China.
ACS Appl Mater Interfaces. 2024 Oct 3. doi: 10.1021/acsami.4c13023.
Organic electrode materials (OEMs) have attracted much attention for rechargeable batteries due to their low cost, environment friendliness, flexibility, and structural versatility. Despite the above advantages, high solubility in electrolyte and low electronic conductivity remain critical limitations for the application of OEMs. In this work, the conjugated organic polymer (COP) poly([5,10,15,20-tetrakis(4-phenylalkynyl)porphyrin]Cu(II)) (PCuTPEP) is proposed as a cathode for high performance in organic lithium batteries. The polymerization inhibits the dissolution of the organic electrodes in the electrolyte, and the porphyrin and ethynyl-phenyl groups greatly expand the conjugated system and result in a high average discharge plateau at 4.0 V (vs Li/Li). The PCuTPEP cathode exhibits a reversible discharge capacity of 119 mAh g at a current of 50 mA g. Even at a high current density of 2.0 A g, excellent cycling stability up to 1000 cycles is achieved with capacity retentions of 88.5 and 90.4% at operating temperatures of 25 and 50 °C in organic lithium batteries, respectively. This study provides the approach for the development of organic cathodes for electrochemical energy storage.
有机电极材料(OEMs)因其低成本、环境友好、柔韧性和结构多样性而在可充电电池领域备受关注。尽管具有上述优点,但在电解质中的高溶解性和低电子导电性仍然是有机电极材料应用的关键限制。在这项工作中,提出了共轭有机聚合物(COP)聚([5,10,15,20-四(4-苯基乙炔基)卟啉]铜(II))(PCuTPEP)作为高性能有机锂电池的阴极。聚合作用抑制了有机电极在电解质中的溶解,卟啉和乙炔基苯基极大地扩展了共轭体系,并导致在4.0 V(相对于Li/Li)处有较高的平均放电平台。PCuTPEP阴极在50 mA g的电流下表现出119 mAh g的可逆放电容量。即使在2.0 A g的高电流密度下,在有机锂电池中,在25和)50 °C的工作温度下,分别实现了高达1000次循环的优异循环稳定性,容量保持率分别为88.5%和90.4%。这项研究为电化学储能有机阴极的开发提供了方法。