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6篇 您的检索式:作者名="Hung IM"
    题名 作者 年代 出处 被引量
1Invited Paper: Dielectric Properties of CaCu3Ti4012 PolycrystaUine Ceramics显示文摘Lee S Y Hung Y W Im Yoo S 2011Electronic Materials Letters2011,7,4:1
2Crystallization kinetics and growth mechanism of 8mo1% yttria- stabilized zirconia (8YSZ) nano-powders prepared by a sol gel process 显示文摘KUO CW LEE YH Hung IM 2008Journal of Alloys and Compounds2008,453,:1
3Ether-functionalized ionic liquids as highly efficient SO2 absorbents 显示文摘Hung Sung Yun Im Jinkyu Palgunad Jelliarko 2011Energy Environ Sci2011,4,5:1
4Frictional response of bovine articular cartilage under creep loading following proteoglycan diges- tion with chondroitinase ABC 显示文摘Basalor IM Chen FH Hung CT 2006J Biomech Eng2006,1,:1
5Effect of calcination temperature on morphology of mesoporous YSZ 显示文摘Hung Iming Hung Detsai Fung Kuanzong 2006J Eur Ceram Soc2006,26,13:1
6Low-temperature synthesis of Fe_(2)(MoO_(4))_(3) nanosheets: A cathode for sodium ion batteries with kinetics enhancement显示文摘Sodium ion batteries (SIBs) are alternatives to lithium ion batteries (LIBs), and offer some significant benefits such as cost reduction and a lower environmental impact;however, to compete with LIBs, further research is required to improve the performance of SIBs. In this study, an orthorhombic Na super ionic conductor structural Fe_(2)(MoO_(4))_(3) nanosheet with amorphous-crystalline core-shell alignment was synthesized using a facile low-temperature water-vapor-assisted solid-state reaction and applied as a cathode material for SIBs. The obtained material has a well-defined three-dimensional stacking structure, and exhibits a high specific capacity of 87.8 mAh·g^(−1) at a current density of 1 C = 91 mA·g^(−1) after 1,000 cycles, which is due to the considerable contribution of extra surface-related reaction such as the pseudo-capacitive process. This material shows significantly improved cycling and rated behavior as well as enhanced performance under high- and low-temperature conditions, as compared to the same materials prepared by the conventional high-temperature solid-state reaction. This enhancement is explained by the unique morphology in combination with the improved kinetics of the electrochemical reaction due to its lower charge transfer resistance and higher sodium ion conductivity.Ha Tran Huu N.S.M.Viswanath Ngoc Hung Vu Jong-Won Lee Won Bin Im 2021Nano Research2021,14,11:0
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