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分子工程有机共聚物作为用于在零下温度下运行的水系质子电池的高容量阴极材料。

Molecularly engineered organic copolymers as high capacity cathode materials for aqueous proton battery operating at sub-zero temperatures.

作者信息

Lakshmi K C Seetha, Vedhanarayanan Balaraman, Cheng Hsiu-Yao, Ji Xiaobo, Shen Hsin-Hui, Lin Tsung-Wu

机构信息

Department of Chemistry, Tunghai University, No.1727, Sec.4, Taiwan Boulevard, Xitun District, Taichung 40704, Taiwan.

Department of Chemistry, Tunghai University, No.1727, Sec.4, Taiwan Boulevard, Xitun District, Taichung 40704, Taiwan.

出版信息

J Colloid Interface Sci. 2022 Aug;619:123-131. doi: 10.1016/j.jcis.2022.03.091. Epub 2022 Mar 23.

DOI:10.1016/j.jcis.2022.03.091
PMID:35378474
Abstract

High-performance aqueous all-organic rechargeable batteries are promising candidates for cost-effective, safe, and environment-friendly next-generation energy storage devices. Herein, two organic copolymers with nanorod-like morphology (AN-TA, and AN-PA), composed of different tertiary amines, are synthesized as the cathode material for an aqueous proton battery. The individual copolymer electrodes possess the dominated diffusion-controlled electrode kinetics resulting from the proton insertion/de-insertion along with the surface-controlled processes in 2 M HCl and 2 M HSO. Among the two copolymers, AN-PA exhibits the maximum specific capacity of 145 mAh g at 1 A g and then, even at the higher current density of 10 A g, it possesses the capacity as 110 mAh g in 2 M HCl. The assembled aqueous proton battery comprising of AN-PA as a cathode delivers the capacity of 80 mAh g at 1 A g in 2 M HCl. The maximum deliverable energy density of 33.9 Wh kg is achieved at the power density of 423 W kg. Notably, our proton battery can well operate at the sub-zero temperature of -25 °C with a cell voltage of 1.1 V. More importantly, the device retains 84 % of the initial capacity after 1000 cycles at 2 A g and exhibits the retention of specific capacity of about > 93% when compared to that of room temperature.

摘要

高性能水系全有机可充电电池是具有成本效益、安全且环保的下一代储能设备的有前途的候选者。在此,合成了两种具有纳米棒状形态的有机共聚物(AN-TA和AN-PA),它们由不同的叔胺组成,用作水系质子电池的正极材料。在2 M HCl和2 M H₂SO₄中,单个共聚物电极具有由质子嵌入/脱出以及表面控制过程导致的主导扩散控制电极动力学。在这两种共聚物中,AN-PA在1 A g时表现出145 mAh g的最大比容量,然后,即使在10 A g的更高电流密度下,在2 M HCl中它仍具有110 mAh g的容量。由AN-PA作为正极组装的水系质子电池在2 M HCl中1 A g时的容量为80 mAh g。在423 W kg的功率密度下实现了33.9 Wh kg的最大可交付能量密度。值得注意的是,我们的质子电池在-25°C的零下温度下能够很好地运行,电池电压为1.1 V。更重要的是,该器件在2 A g下经过1000次循环后保留了初始容量的84%,并且与室温相比,比容量保留率约>93%。

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