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含痕量铁的氮硫掺杂多孔碳片作为高负载锂硫电池高效多硫化物转化催化剂

Nitrogen and Sulfur Doped Porous Carbon Sheet with Trace Amount of Iron as Efficient Polysulfide Conversion Catalyst for High Loading Lithium-Sulfur Batteries.

作者信息

Sivaraj Jeevanantham, Dasari Bosubabu, Subramani Prakash, Pitchai Jayashree, Unni Sreekuttan M, Ramesha K

机构信息

CSIR-Central Electrochemical Research Institute Madras Unit, CSIR Madras Complex, Taramani, Tamil Nadu, Chennai, 600113, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

出版信息

Chemphyschem. 2025 Jan 14;26(2):e202400406. doi: 10.1002/cphc.202400406. Epub 2024 Nov 12.

DOI:10.1002/cphc.202400406
PMID:39394837
Abstract

The major challenges in enhancing the cycle life of lithium-sulfur (Li-S) batteries are polysulfide (PS) shuttling and sluggish reaction kinetics (S to LiS, LiS to S). To alleviate the above issues, the use of heteroatom-doped carbon as a cathode host matrix is a low-cost and efficient approach, as it works as a dual-functional framework for PS anchoring as well as an electrocatalyst for faster redox kinetics. Here, the dual role of heteroatom-doped carbon sheets (CS) in the chemisorption of LiS and catalysis of its faster conversion to LiS is established. To substantiate the catalytic effect, composite cathodes were prepared by encapsulating sulfur in CS which is further blended with carbon nanotubes (CNTs) to form a free-standing cathode. The electrochemical performances of the three cathodes (S@Fe-N-CS-CNT, S@Fe-S-CS-CNT, and S@Fe-NS-CS-CNT) were evaluated by constructing Li-S cells. The S@Fe-NS-CS-CNT delivers a high initial discharge capacity of 1017 mAh g at 0.5 C rate and sustains a capacity of 751 mAh g after 260 cycles with a capacity retention of 73.8 %. Even at a high S loading (12 mg cm), it delivers an initial discharge capacity of 892 mAh g and retained 575 mAh g after 200 cycles.

摘要

提高锂硫(Li-S)电池循环寿命的主要挑战是多硫化物(PS)穿梭和缓慢的反应动力学(S到LiS,LiS到S)。为了缓解上述问题,使用杂原子掺杂碳作为阴极主体基质是一种低成本且高效的方法,因为它可作为PS锚定的双功能框架以及用于更快氧化还原动力学的电催化剂。在此,确立了杂原子掺杂碳片(CS)在LiS化学吸附及其更快转化为LiS的催化过程中的双重作用。为了证实催化效果,通过将硫封装在CS中制备复合阴极,CS进一步与碳纳米管(CNT)混合以形成独立式阴极。通过构建Li-S电池评估了三种阴极(S@Fe-N-CS-CNT、S@Fe-S-CS-CNT和S@Fe-NS-CS-CNT)的电化学性能。S@Fe-NS-CS-CNT在0.5 C倍率下具有1017 mAh g的高初始放电容量,在260次循环后维持751 mAh g的容量,容量保持率为73.8%。即使在高硫负载(12 mg cm)下,它也具有892 mAh g的初始放电容量,在200次循环后保留575 mAh g。

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