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    Article

    Development of high ionic-conductive Li1.5Al0.5Ge1.5(PO4)3 glass-ceramic solid electrolyte sheet at low temperature using glass/powder composite

    Because of some drawbacks of the organic electrolytes, such as high toxicity and flammability, inorganic electrolytes have attracted attention regarding applications in all-solid-state rechargeable batteries. ...

    Tae Wook Kang, Young Ji Park, Gyu ** Jeong in Journal of Solid State Electrochemistry (2022)

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    Catalytic characteristics of Ni(B)-coated YSZ powder by neutral electroless plating

    In this study, an eco-friendly, electroless, and neutral (pH 7.0) process of nickel plating at low temperature (40 °C) was used to develop an anode catalyst for a solid oxide fuel cell (SOFC). Electroless Ni(B...

    Sa-Kyun Rha, Mi-Jai Lee, Youn-Seoung Lee in Journal of the Korean Ceramic Society (2020)

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    Catalysts characteristics of Ni/YSZ core-shell according to plating conditions using electroless plating

    This study aims to develop an anode catalyst for a solid oxide fuel cell (SOFC) using electroless nickel plating. We have proposed a new method for electroless plating of Ni metal on yttria-stabilized zirconia...

    Hyun-Wook Park, Jae-Won Jang, Young-** Lee in Metals and Materials International (2017)

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    Article

    Fabrication of patterned TiO2 thin film by a wet process

    Hydrophobic/hydrophilic patterned TiO2 thin film was successfully fabricated on a glass substrate by a wet process. A micro-nano complex structure with a high roughness was fabricated by a layer-by-layer selfasse...

    **-Ho Kim, Mi Jai Lee, Seiki Kim, Jonghee Hwang in Metals and Materials International (2012)

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    Article

    The synthesis of carbon nanotubes (CNTs) by catalytic CVD using a Fe/Co-supported zeolite template

    Well-shaped faujasite-type zeolite (FAU) octahedral crystals 15 ìm in size were synthesized hydrothermally in an autoclave. The synthesis solution had a molar composition of 3.5 Na2O : Al2O3 : 2.1 SiO2 : 1000 H2O...

    Wei Zhao, Mi Jai Lee, Hyung Tae Kim, Ik ** Kim in Electronic Materials Letters (2011)