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调控三维多孔碳中的氮构型和含量以改善锂存储性能

Regulation of nitrogen configurations and content in 3D porous carbons for improved lithium storage.

作者信息

Chao Huixia, Zhu Yifan, Luo Xiangsheng, Zhang Chaoqun, Liu Jiale, Wang Weijiang, Qu Meiqing

机构信息

Guangxi Colleges and Universities Key Laboratory of Beibu Gulf Oil and Natural Gas Resource Effective Utilization, Qinzhou Key Laboratory for Development and Application of High Performance Functional Materials, Beibu Gulf University, Qinzhou, 535011, China.

出版信息

Dalton Trans. 2021 Oct 19;50(40):14390-14399. doi: 10.1039/d1dt02133h.

Abstract

The incorporation of active nitrogen species in carbon materials has been widely demonstrated as a viable means to produce superior lithium storage materials, while the precise regulation of nitrogen configurations as well as their content still remains a formidable challenge. Herein, nitrogen-free porous carbon frameworks were synthesized by a self-templating strategy from disodium citrate, and post-annealing yielded 10.4 at% N that was primarily pyrrolic-N and pyridinic-N with an atomic ratio of about 3 : 1, with negligible inactive graphitic-N. A gravimetric capacity of 570 mA h g at a current density of 4 A g was measured for a Li half-cell based on the as-prepared N-doped 3D carbon materials. Lithium-ion capacitors with this N-doped carbon as the anode and commercial AC as the cathode yielded energy densities of 58.9 and 142.6 W h kg with the corresponding power densities of 7400 and 185 W kg, respectively. We suggest that the carbon materials with high content of pyrrolic-N and pyridinic-N especially pyrrolic-N have improved lithium storage.

摘要

活性氮物种掺入碳材料已被广泛证明是制备优质锂存储材料的一种可行方法,然而,氮构型及其含量的精确调控仍然是一项艰巨的挑战。在此,通过柠檬酸钠的自模板策略合成了无氮多孔碳骨架,退火后产生了10.4 at%的氮,主要是吡咯氮和吡啶氮,原子比约为3∶1,无活性石墨氮可忽略不计。基于所制备的氮掺杂三维碳材料的锂半电池,在电流密度为4 A g时测得的重量容量为570 mA h g。以这种氮掺杂碳为阳极、商用活性炭为阴极的锂离子电容器,能量密度分别为58.9和142.6 W h kg,相应的功率密度分别为7400和185 W kg。我们认为,具有高含量吡咯氮和吡啶氮尤其是吡咯氮的碳材料具有改善的锂存储性能。

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