王向

个人信息Personal Information

职称:特聘教授(人才)

博士生导师

学科:材料学

学位:博士

所在单位:材料科学与工程学院

联系方式:邮箱:wangxiang25@ustb.edu.cn

论文成果

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Atomic Layer Deposition of the Solid Electrolyte Garnet Li7La3Zr2O12

点击次数:

影响因子:7.1

DOI码:10.1021/acs.chemmater.7b00944

发表刊物:Chemistry of Materials

摘要:Lithium solid electrolytes are a promising platform for achieving high energy density, long-lasting, and safe rechargeable batteries, which could have widespread societal impact. In particular, the ceramic oxide garnet Li7La3Zr2O12 (LLZO) has been shown to be a promising electrolyte due to its stability and high ionic conductivity. Two major challenges for commercialization are the manufacture of thin layers and the creation of stable, low-impedance interfaces with both anode and cathode materials. Atomic layer deposition (ALD) has recently been shown to be a powerful method for depositing both solid electrolytes and interfacial layers to improve the stability and performance at electrode–electrolyte interfaces in battery systems. Herein, we present a thermal ALD process for LLZO, demonstrating the ability to tune composition within the amorphous as-deposited film, which is studied using in situ quartz crystal microbalance measurements. Postannealing using a variety of substrates and gas environments was performed, and the formation of the cubic phase was observed at temperatures as low as 555 °C, significantly lower than what is required for bulk processing. Additionally, challenges associated with achieving a dense garnet phase due to substrate reactivity, morphology changes, and Li loss under the necessary high-temperature annealing are quantified via in situ synchrotron X-ray diffraction.

合写作者:Kuan-Hung Chen, Kevin N Wood, Andrew L Davis, Travis Thompson, Ashley R Bielinski, Adrian J Sanchez, Xiang Wang, Chongmin Wang, Jeff Sakamoto

第一作者:Eric Kazyak

通讯作者:Neil P Dasgupta

学科门类:工学

文献类型:J

卷号:29

期号:8

页面范围:3785-3792

是否译文:

发表时间:2018-04-25

收录刊物:SCI

发布期刊链接:https://pubs.acs.org/doi/full/10.1021/acs.chemmater.7b00944