Ni2P electrocatalysts decorated hollow carbon spheres as bi-functional mediator against shuttle effect and Li dendrite for Li-S batteries

材料科学 阳极 阴极 化学工程 锂(药物) 催化作用 枝晶(数学) 电化学 碳纤维 过电位 电解质 析氧 法拉第效率 纳米技术 电极 纳米颗粒 过渡金属 复合材料 化学 物理化学 有机化学 几何学 内分泌学 工程类 复合数 医学 数学
作者
Shan Yang,Ru Xiao,Tianzhao Hu,Xialu Fan,Ruogu Xu,Zhenhua Sun,Benhe Zhong,Yusuke Yamauchi,Feng Li
出处
期刊:Nano Energy [Elsevier BV]
卷期号:90: 106584-106584 被引量:36
标识
DOI:10.1016/j.nanoen.2021.106584
摘要

Lithium-sulfur (Li-S) batteries are promising candidates for next-generation energy storage devices, while shuttle effect and Li dendrite growth severely obstruct the practical applications. Herein, well-dispersed Ni 2 P electrocatalysts decorated hollow carbon spheres (Ni 2 P-HCS) are constructed as high-efficiency bi-functional mediator for Li-S batteries. Benefiting from polar surface and high electrical conductivity, Ni 2 P-HCS possesses strong interaction and efficient electrocatalysis toward polysulfides. Moreover, regulated Li deposition behavior is realized on lithiated Ni 2 P-HCS surface ascribed to its lithiophilicity and as-formed mixed ion-electron conducting host composed of Li 3 P and Ni. As a result, the assembled Li-S full cells with Ni 2 P-HCS used as interlayer and Li host exhibit excellent rate capability (755.5 mAh g −1 at 2 C) and long-term cycling stability (capacity fading rate of 0.05% per cycle at 1 C after 500 cycles). Importantly, high areal capacity (6.67 mAh cm −2 ) with high sulfur loading of 5.9 mg cm −2 at low E/S ratio (6.8 μL mg −1 ) is achieved. The loading coefficient and catalytic effectiveness value (CEV) are proposed to evaluate catalytic efficiency of electrocatalysts. This work exploits the potential of metal phosphides in concurrently solving challenges for S cathode and Li anode, and offers insight into developing high-efficiency electrocatalysts for advanced Li-S batteries. Well-dispersed Ni 2 P electrocatalysts implanted hollow carbon spheres (Ni 2 P-HCS) are designed as bi-functional mediators for advanced Li-S batteries. Ni 2 P-HCS exhibits robust chemisorption and high-efficient electrocatalysis to suppress the shuttle effect, and regulates the Li deposition behaviour to realize dendrite-free Li anode. Loading coefficient and catalytic effectiveness value are proposed to evaluate the intrinsic catalytic ability of electrocatalysts. • Ni 2 P decorated hollow carbon spheres (Ni 2 P-HCS) were constructed as bi-functional mediator for Li-S batteries. • As the interlayer, Ni 2 P-HCS has strong interaction and efficient electrocatalysis toward polysulfides. • As the Li host, lithiated Ni 2 P-HCS (mixed ion-electron conductor Li 3 P/Ni) enables regulated Li deposition. • Catalytic effectiveness value was proposed to evaluate the catalytic efficiency of diverse catalysts more intuitively.
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