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7篇 您的检索式:作者名="Alfred Tok"
    题名 作者 年代 出处 被引量
1阳极支撑结构IT-SOFC的阳极及电解质层的水系流延与共烧显示文摘采用水系流延成型,共烧制备了平板式中温固体氧化物燃料电池(SolidoxidefuelcellSOFC)的NiO/YSZ阳极支撑电解质氧化钇稳定氧化锆(YSZ)薄膜复合体。通过调节优化浆料的pH值、分散剂和粘度获得了具有均匀的微观结构电解质YSZ与阳极NiO/YSZ流延素坯。调节阳极中的YSZ粉体的颗粒级配,以促使阳极坯片的烧成收缩与电解质坯片的烧成收缩相匹配,获得大面积、平整的阳极与电解质复合烧结体,其中阳极层厚度为0.5~1.0mm,孔隙分布均匀,孔隙率达30vol%以上;电解质厚度为15μm以下,相对密度大于98%;阳极与电解质层界面两者能很好地烧结在一起。程亮 罗凌虹 吴也凡 石纪军 王程程 黄祖志 Alfred Tok 2009陶瓷学报2009,30,4:7
2Improvement of Stress Corrosion Resistance in Aluminum Alloy 7075 through Retrogression and Re-Aging Modification显示文摘Siva Krishna Karuturi Li Jun Liu Liap Tat Su Wen Bin Niu Alfred Ling Yoong Tok 20132013 (789)2013,,789:1
3Tape casting of high dielectric ceramic composite substrates for microelectronics application显示文摘Alfred I Y Tok Freddy Y C Boey K A Khor 1999Journal of Materials Processing Technology1999,,8990:1
4Study of the cation distributions in Eu doped Sr 2 Y 8 (SiO 4 ) 6 O 2 by X-ray diffraction and photoluminescent spectra显示文摘Yiqiang Shen Rui Chen Fen Xiao Handong Sun Alfred Tok Zhili Dong 2010Journal of Solid State Chemistry2010,,12:1
5Tape casting of high dielectric ceramic composite substrates for microclectronics application显示文摘Tok I Y Alfred Bory Freddy Y C Khor K A 1999Materials processing technology1999,,:1
6Complete coverage of reduced graphene oxide on silicon dioxide substrates显示文摘Reduced graphene oxide(RGO) has the advantage of an aqueous and industrial-scale production route. No other approaches can rival the RGO field effect transistor platform in terms of cost(Huang Jingfeng Melanie Larisika Chen Hu Steve Faulkner Myra A.Nimmo Christoph Nowak Alfred Tok Iing Yoong 2014Chinese Physics B2014,23,8:0
7Melting mechanisms of Pt-based multimetallic spherical nanoparticles by molecular dynamics simulation显示文摘The melting mechanisms of Pt-based multimetallic nanoparticles(NPs)are important to help determine their optimal melting processes.To understand the melting and coalescence behaviors of heterogeneous NPs(Pd-Pt NPs)with various sizes and compositions,molecular dynamics(MD)simulation was employed.The MD results for larger Pd-Pt NPs with an effective diameter of4.6-7.8 nm show that PtPd alloy can form at Pd/Pt interface before Pd NP melted completely,while for Pt-core/Pdshell NP and Pd-core/Pt-shell NP,PtPd alloy formed only after Pd portion melted completely.For smaller Pd-Pt NPs with an effective diameter of 2.5-4.0 nm,PdPt alloy is not formed until both Pd and Pt NPs melted completely.Besides,the coalescence process of Pd-Pt NPs depends on the melting temperature of Pt NP when Pt composition is higher than 20 at%.Furthermore,the melting mechanisms of Pd/Pt/Ir trimetallic NPs are investigated.A two-step melting process occurs in Pd-Pt-Ir NPs and Ir-core/Ptshell/Pd-shell NP,and the melting sequence of Pd-core/Ptshell/Ir-shell NP and Pt-core/Pd-shell/Ir-shell NP is different from Pd/Pt bimetallic NPs.Chun-Yu Cheng Yuan-Yuan Guo Yi-Ming Zou Amanda Jiamin Ong Alfred ling Yoong Tok Shuzhou Li 2023Rare Metals2023,42,2:0
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