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首页> 外文期刊>ACS applied materials & interfaces >Behind the Candelabra: A Facile Flame Vapor Deposition Method for Interfacial Engineering of Garnet Electrolyte To Enable Ultralong Cycling Solid-State Li-FeF3 Conversion Batteries
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Behind the Candelabra: A Facile Flame Vapor Deposition Method for Interfacial Engineering of Garnet Electrolyte To Enable Ultralong Cycling Solid-State Li-FeF3 Conversion Batteries

机译:烛台后面:石榴石电解质界面工程的容易火焰气相沉积方法,以实现超循环固态Li-Fef3转换电池

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摘要

The frustrating interfacial issue between Li metal anode and solid electrolyte is the main obstacle that restricts the commercial promotion of solid-state batteries. The garnet-type ceramic electrolyte with high stability against metallic Li has drawn much attention, but it also suffers from huge interfacial resistance and Li dendrite penetration due to the unavoidable formation of the carbonate passivation layer and limited interface contact. Herein, we propose a facile and effective method of flame vapor deposition to spray candle soot (CS) coating on the garnet surface. It enables the reduction of the carbonate layer and the conversion to a highly lithiophilic interlayer especially when in contact with molten Li. The lithiophilicity is rooted in the enrichment of graphitic polycrystalline domains in CS, which can be chemically or electrochemically lithiated to form the ionic/electronic dual-conductive network containing LiC6 moieties. The CS interlayer binds the Li metal with the garnet electrolyte tightly with gradual transition of Li-ion conductivity, leading to a significant reduction of the area-specific resistance to 50 Omega cm(2) at 60 degrees C with high cycling and current endurance. Garnet-based symmetric cells and solid-state full cells conducting this strategy exhibit impressive electrochemical reversibility and durability under the preservation of the compact interface and smooth Li plating/stripping. The modified Li/garnet/FeF3 batteries exhibit a discharge capacity as high as 500 mA h g(-1) and long-term cyclability for at least 1500 cycles (with capacity preserved at 281.7 and 201 mA h g(-1) at 100 and 200 mu A cm(-2), respectively). This candle combustion strategy can be extended to more ceramic electrolytes compatible with high-temperature pretreatment.
机译:Li金属阳极和固体电解质之间的令人沮丧的界面问题是限制固态电池商业促进的主要障碍。石榴石型陶瓷电解质具有高稳定性的锂李锂稳定性,引起了很多关注,但由于碳酸盐钝化层和有限界面接触的不可避免地形成,它也存在巨大的界面抗性和Li Dendrite渗透。在此,我们提出了一种容易和有效的火焰气相沉积方法,以在石榴石表面上喷射蜡烛烟灰(Cs)涂层。它能够减少碳酸酯层和转化为高锂碘中间层,特别是当与熔融Li接触时。锂纤维性植根于Cs中的石墨多晶结构域的富集,其可以化学或电化学锂化以形成含有LiC6部分的离子/电子双导电网络。 CS中间层与石榴石电解质紧紧地将Li金属与锂离子电导率的逐渐转变结合,导致在60℃下在60℃下大致减少到50℃的50℃,具有高循环和电流耐久性。基于石榴石的对称电池和固态全电池进行该策略,在紧凑型界面的保存下表现出令人印象深刻的电化学可逆性和耐用性,平滑Li电镀/剥离。改性的LI / GARNET / FEF3电池具有高达500 mA HG(-1)的放电容量和至少1500次循环的长期可循环性(在100和200时以281.7和201 mA MA HG(-1)保存) mu a cm(-2))分别)。这种蜡烛燃烧策略可以扩展到与高温预处理相容的更多陶瓷电解质。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2020年第30期|共11页
  • 作者单位

    Chinese Acad Sci Shanghai Inst Ceram State Key Lab High Performance Ceram &

    Superfine Shanghai 201899 Peoples R China;

    Chinese Acad Sci Shanghai Inst Ceram State Key Lab High Performance Ceram &

    Superfine Shanghai 201899 Peoples R China;

    Chinese Acad Sci Shanghai Inst Ceram State Key Lab High Performance Ceram &

    Superfine Shanghai 201899 Peoples R China;

    Chinese Acad Sci Shanghai Inst Ceram State Key Lab High Performance Ceram &

    Superfine Shanghai 201899 Peoples R China;

    Chinese Acad Sci Shanghai Inst Ceram State Key Lab High Performance Ceram &

    Superfine Shanghai 201899 Peoples R China;

    Chinese Acad Sci Shanghai Inst Ceram State Key Lab High Performance Ceram &

    Superfine Shanghai 201899 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    candle soot; carbonate passivation layer; interface modification; garnet solid electrolyte; solid-state batteries; FeF3 cathode;

    机译:蜡烛烟灰;碳酸盐钝化层;界面改性;石榴石固体电解质;固态电池;FEF3阴极;

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