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用于高性能锂硫电池的具有双面夹层的多硫化物化学吸附和物理限制

Chemical Adsorption and Physical Confinement of Polysulfides with the Janus-faced Interlayer for High-performance Lithium-Sulfur Batteries.

作者信息

Chiochan Poramane, Kaewruang Siriroong, Phattharasupakun Nutthaphon, Wutthiprom Juthaporn, Maihom Thana, Limtrakul Jumras, Nagarkar Sanjog S, Horike Satoshi, Sawangphruk Montree

机构信息

Department of Chemical and Biomolecular Engineering, School of Energy Science and Engineering, Vidyasirimedhi Institute of Science and Technology, Rayong, 21210, Thailand.

Department of Materials Engineering, School of Molecular Science and Engineering, Vidyasirimedhi Institute of Science and Technology, Rayong, 21210, Thailand.

出版信息

Sci Rep. 2017 Dec 18;7(1):17703. doi: 10.1038/s41598-017-18108-0.

Abstract

We design the Janus-like interlayer with two different functional faces for suppressing the shuttle of soluble lithium polysulfides (LPSs) in lithium-sulfur batteries (LSBs). At the front face, the conductive functionalized carbon fiber paper (f-CFP) having oxygen-containing groups i.e., -OH and -COOH on its surface was placed face to face with the sulfur cathode serving as the first barrier accommodating the volume expansion during cycling process and the oxygen-containing groups can also adsorb the soluble LPSs via lithium bonds. At the back face, a crystalline coordination network of [Zn(HPO)(TzH)] (ZnPTz) was coated on the back side of f-CFP serving as the second barrier retarding the left LPSs passing through the front face via both physical confinement and chemical adsorption (i.e. Li bonding). The LSB using the Janus-like interlayer exhibits a high reversible discharge capacity of 1,416 mAh g at 0.1C with a low capacity fading of 0.05% per cycle, 92% capacity retention after 200 cycles and ca. 100% coulombic efficiency. The fully charged LSB cell can practically supply electricity to a spinning motor with a nominal voltage of 3.0 V for 28 min demonstrating many potential applications.

摘要

我们设计了具有两个不同功能面的类Janus夹层,以抑制锂硫电池(LSB)中可溶性多硫化锂(LPS)的穿梭。在正面,将表面具有含氧基团(即-OH和-COOH)的导电功能化碳纤维纸(f-CFP)与硫阴极面对面放置,作为在循环过程中容纳体积膨胀的第一道屏障,并且含氧基团还可以通过锂键吸附可溶性LPS。在背面,[Zn(HPO)(TzH)](ZnPTz)的晶体配位网络涂覆在f-CFP的背面,作为第二道屏障,通过物理限制和化学吸附(即锂键)来阻止剩余的LPS穿过正面。使用类Janus夹层的LSB在0.1C时表现出1416 mAh g的高可逆放电容量,每循环容量衰减低至0.05%,200次循环后容量保持率为92%,库仑效率约为100%。充满电的LSB电池实际上可以为标称电压为3.0 V的旋转电机供电28分钟,展示了许多潜在应用。

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