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机构 日期 题名 作者
臺大學術典藏 2020-01-06T03:10:54Z Silver-Enhanced Synthesis of YBa2Cu3O7-x Wu, N.-L.; Chang, Y.-C.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:54Z Kinetic Study and Modeling of The Solid-State Reaction Y2BaCuO5 + 3BaCuO2 + 2CuO → 2YBa2Cu3O6.5?A + xO2 Wu, N.-L.; Wei, T.-C.; Hou, S.-Y.; Wong, S.-Y.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:54Z Structure of films formed during the deposition of lubrication molecules on iron and silicon carbide Klaus, E.E.; Phillips, J.; Lin, S.C.; Wu, N.L.; Duda, J.L.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:53Z Accelerated bulk synthesis of CaxY1-xBa 2Cu4Oy (x=0, 0.1) by molten silver Wu, N.-L.; Yu, H.-D.; Wei, S.H.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:53Z Synthesis of high-Tc superconducting oxide powders Wu, N.-L.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:52Z The stability of YBa2Cu3O7-x in contact with silver Lin, S.-H.; Wu, N.-L.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:52Z Silver-accelerated phase transformation from YBa2Cu3O7-x to YBa2Cu4O8 Wu, N.-L.; Yu, H.-D.; Lin, S.-H.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:52Z Low-temperature YBa2Cu4O8-to-YBa2Cu3O7decomposition process for enhanced intra- and intergrain critical current densities in Y-Ba-Cu-O/Ag composites Wu, N.-L.; Yu, H.-D.; Yao, Y.D.; Ruckenstein, E.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:51Z Spontaneous solution-sol-gel process for preparing tin oxide monolith Wu, N.-L.; Wu, L.-F.; Yang, Y.-C.; Huang, S.-J.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:51Z Melting and resolidification of YBa2Cu3O7 - x silver composites Lin, S.-H.; Wu, N.-L.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:51Z Low-temperature melt growth of YBa2Cu3O7-x/silver composites in partial vacuum Wu, N.-L.; Zern, H.H.; Chen, C.-L.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:51Z Bitter pattern study of flux pinning in melt-grown YBa2Cu3O7-x Wu, N.-L.; Zheng, H.-H.; Tarn, K.-L.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:50Z The structures of the 126 K Ba2Ca2Cu3(CaxCuy)O 8+δ, the 116 K Ba2Ca3Cu4(CaxCuy)O 10+δ and their transformed products Xue, Y.Y.; Sun, Y.Y.; Du, Z.L.; Rusakova, I.; Ross, K.; Wu, N.L.; Cao, Y.; Gao, L.; Chu, C.W.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:49Z Effects of Sr-doping in Ba2Ca2+xCu3+yOz Hickey, B.R.; Du, Z.L.; Xue, Y.Y.; Ross, D.K.; Dezaneti, L.M.; Sun, Y.Y.; Wu, N.L.; Chu, C.W.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:49Z Tin oxide gel shrinkage during CO2 supercritical drying Wang, S.-Y.; Wu, N.-L.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:49Z Phase identification of the new 126 K Ba-Ca-Cu-O superconductor Xue, Y.Y.; Sun, Y.Y.; Rusakova, I.; Ross, D.K.; Du, Z.L.; Wu, N.L.; Cao, Y.; Gao, L.; Hickey, B.; Chu, C.W.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:49Z Superconductivity up to 126 kelvin in interstitially doped Ba 2Ca(n-1) Cu(n)O(x) [02(n-1)n-Ba] Chu, C.W.; Xue, Y.Y.; Du, Z.L.; Sun, Y.Y.; Gao, L.; Wu, N.L.; Cao, Y.; Rusakova, I.; Ross, K.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:49Z The novel high temperature superconducting Ba-Ca-Cu-O system Chu, C.W.; Du, Z.L.; Xue, Y.Y.; Cao, Y.; Wu, N.L.; Rusakova, I.; Hervieu, M.; Raveau, B.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:48Z Hydrothermal synthesis of submicron SnO crystallites Wu, D.-S.; Wu, N.-L.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:48Z Observation and identification of a 107 K superconducting family in the CaBa2Ca2Cu3O9-δ system Wu, N.L.; Du, Z.L.; Xue, Y.Y.; Rusakova, I.; Ross, D.K.; Gao, L.; Cao, Y.; Sun, Y.Y.; Chu, C.W.; Hervieu, M.; Raveau, B.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:48Z Preparation of tin oxide gels with versatile pore structures Wu, N.-L.; Wang, S.-Y.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:48Z Identification and structural characterization of Ca(PtxCu(1-x))3O4 Wu, N.L.; Wu, D.S.; Rusakova, I.A.; Ross, D.K.; Stephens, P.W.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:48Z Inhibition of crystallite growth in the sol-gel synthesis of nanocrystalline metal oxides Wu, N.-L.; Wang, S.-Y.; Rusakova, I.A.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:47Z Enhanced performance of SnO2 xerogel electrochemical capacitor prepared by novel crystallization process Wu, N.L.; Han, C.Y.; Kuo, S.L.; NAE-LIH WU
臺大學術典藏 2020-01-06T03:10:47Z Nanocrystalline oxide supercapacitors Wu, N.-L.; NAE-LIH WU

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