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作为锂硫电池中强大的多硫化物固定剂稳定在独立纳米纤维中的TiO相:路易斯酸碱相互作用的证据

TiO Phase Stabilized into Freestanding Nanofibers as Strong Polysulfide Immobilizer in Li-S Batteries: Evidence for Lewis Acid-Base Interactions.

作者信息

Singh Arvinder, Kalra Vibha

机构信息

Chemical and Biological Engineering , Drexel University , Philadelphia , Pennsylvania 19104 , United States.

出版信息

ACS Appl Mater Interfaces. 2018 Nov 7;10(44):37937-37947. doi: 10.1021/acsami.8b11029. Epub 2018 Oct 29.

DOI:10.1021/acsami.8b11029
PMID:30360079
Abstract

We report the stabilization of titanium monoxide (TiO) nanoparticles in nanofibers through electrospinning and carbothermal processes and their unique bifunctionality-high conductivity and ability to bind polysulfides-in Li-S batteries. The developed three-dimensional TiO/carbon nanofiber (CNF) architecture with the inherent interfiber macropores of nanofiber mats provides a much higher surface area (∼427 m g) and overcomes the challenges associated with the use of highly dense powdered Ti-based suboxides/monoxide materials, thereby allowing for high active sulfur loading among other benefits. The developed TiO/CNF-S cathodes exhibit high initial discharge capacities of ∼1080, ∼975, and ∼791 mAh g at 0.1, 0.2, and 0.5 C rates, respectively, with long-term cycling. Furthermore, freestanding TiO/CNF-S cathodes developed with rapid sulfur melt infiltration (∼5 s) eradicate the need of inactive elements, viz., binders, additional current collectors (Al-foil), and additives. Using postmortem X-ray photoelectron spectroscopy and Raman analysis, this study is the first to reveal the presence of strong Lewis acid-base interaction between TiO (3d) and S through the coordinate covalent Ti-S bond formation. Our results highlight the importance of developing Ti-suboxides/monoxide-based nanofibrous conducting polar host materials for next-generation Li-S batteries.

摘要

我们报道了通过静电纺丝和碳热过程在纳米纤维中稳定一氧化钛(TiO)纳米颗粒,以及它们在锂硫电池中独特的双功能——高导电性和结合多硫化物的能力。所开发的具有纳米纤维垫固有纤维间大孔的三维TiO/碳纳米纤维(CNF)结构提供了更高的表面积(约427 m²/g),并克服了与使用高密度粉末状钛基低价氧化物/一氧化钛材料相关的挑战,从而带来了高活性硫负载等诸多益处。所开发的TiO/CNF-S阴极在0.1、0.2和0.5 C倍率下分别表现出约1080、约975和约791 mAh/g的高初始放电容量,并具有长期循环性能。此外,通过快速硫熔体渗透(约5秒)开发的独立式TiO/CNF-S阴极消除了对非活性元素(即粘合剂、额外的集流体(铝箔)和添加剂)的需求。通过死后X射线光电子能谱和拉曼分析,本研究首次揭示了通过配位共价Ti-S键的形成,TiO(3d)和S之间存在强路易斯酸碱相互作用。我们的结果突出了开发基于钛低价氧化物/一氧化钛的纳米纤维导电极性主体材料对下一代锂硫电池的重要性。

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TiO Phase Stabilized into Freestanding Nanofibers as Strong Polysulfide Immobilizer in Li-S Batteries: Evidence for Lewis Acid-Base Interactions.作为锂硫电池中强大的多硫化物固定剂稳定在独立纳米纤维中的TiO相:路易斯酸碱相互作用的证据
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引用本文的文献

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