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Showing items 472711-472735 of 2348617  (93945 Page(s) Totally)
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Institution Date Title Author
國立成功大學 2022 Highly active iron-promoted hexagonal mesoporous silica (HMS) for deoxygenation of triglycerides to green hydrocarbon-like biofuel Zulkepli, S.;Lee, H.V.;Rahman, N.A.;Chuan, L.T.;Show, P.L.;Chen, W.-H.;Juan, Juan J.C.
國立交通大學 2014-12-08T15:12:27Z Highly active nanocrystalline TiO(2) photoelectrodes Paronyan, Tereza M.; Kechiantz, A. M.; Lin, M. C.
國立成功大學 2023 Highly Active NiO-Ni(OH)2-Cr2O3/Ni Hydrogen Evolution Electrocatalyst through Synergistic Reaction Kinetics Chuang, Chuang C.-H.;Kang, P.-H.;Lai, Y.-Y.;Hou, C.-H.;Tseng, W.-C.;Huang, Y.-J.;Fang, M.-H.;Shyue, J.-J.;Kaun, C.-C.;Cheng, Y.-J.
國立臺灣科技大學 2013 Highly active Zr co-doped Ag-ZnO photocatalyst for the mineralization of Acid Black 1 under UV-A light illumination Subash, B.;Krishnakumar, B.;Swaminathan, M.;Shanthi, M.
臺大學術典藏 2022-02-21T23:30:41Z Highly adhesive and disposable inorganic barrier films: Made from 2D silicate nanosheets and water Eguchi, Miharu; Konarova, Muxina; L. Torad, Nagy; Chang, Te An; DUN-YEN KANG; Shapter, Joe; Yamauchi, Yusuke
臺大學術典藏 2022-03-22T08:26:21Z Highly adhesive and disposable inorganic barrier films: Made from 2D silicate nanosheets and water Eguchi M;Konarova M;L. Torad N;Chang T.-A;Kang D.-Y;Shapter J;Yamauchi Y.; Eguchi M; Konarova M; L. Torad N; Chang T.-A; Kang D.-Y; Shapter J; Yamauchi Y.; DUN-YEN KANG
臺大學術典藏 2022-03-22T08:29:11Z Highly adhesive and disposable inorganic barrier films: Made from 2D silicate nanosheets and water Eguchi M;Konarova M;L. Torad N;Chang T.-A;Kang D.-Y;Shapter J;Yamauchi Y.; Eguchi M; Konarova M; L. Torad N; Chang T.-A; Kang D.-Y; Shapter J; Yamauchi Y.; DUN-YEN KANG
臺大學術典藏 2022-03-22T08:29:11Z Highly adhesive and disposable inorganic barrier films: Made from 2D silicate nanosheets and water Eguchi M;Konarova M;L. Torad N;Chang T.-A;Kang D.-Y;Shapter J;Yamauchi Y.; Eguchi M; Konarova M; L. Torad N; Chang T.-A; Kang D.-Y; Shapter J; Yamauchi Y.; DUN-YEN KANG
臺大學術典藏 2021-08-03T01:43:03Z Highly adhesive carbon quantum dots from biogenic amines for prevention of biofilm formation Jian H.-J;Yu J;Li Y.-J;Unnikrishnan B;Huang Y.-F;Luo L.-J;Hui-Kang Ma D;Harroun S.G;Chang H.-T;Lin H.-J;Lai J.-Y;Huang C.-C.; Jian H.-J; HUAN-TSUNG CHANG et al.
國立臺灣科技大學 2019 Highly adsorptive chitosan/saponin-bentonite composite film for removal of methyl orange and Cr(VI) Laysandra, Laysandra L.;Ondang, I.J.;Ju, Y.-H.;Ariandini, B.H.;Mariska, A.;Soetaredjo, F.E.;Putro, J.N.;Santoso, Santoso S.P.;Darsono, F.L.;Ismadji, S.
臺大學術典藏 2018-09-10T09:44:46Z Highly air stable branched octithiophene oligomer for organic field effect transistor and pH sensor applications Wu, H.-C.; Lee, W.-Y.; Lin, C.-J.; Chen, W.-C.; WEN-CHANG CHEN
臺北醫學大學 2014 Highly Aligned and Single- Layered Hollow Fibrous Membranes Prepared from Polyurethane and Silica Blends Through a Two-Fluid Coaxial Electrospun Process Huang, Yun-Shao;Kuo, Chi-Ching;Shu, Yao-Chi;Jang, Shin-Cheng;Tsen, Wen-Chin;Chuang, Fu-Sheng;Chen, Chien-Chung
臺北醫學大學 2014 Highly Aligned and Single-Layered Hollow Fibrous Membranes Prepared from Polyurethane and Silica Blends Through a Two-Fluid Coaxial Electrospun Process Huang;YS;Kuo;CC;Shu;YC;Jang;SC;Tsen;WC;Chuang;FS;Chen;CC
臺北醫學大學 2014 Highly Aligned and Single-Layered Hollow Fibrous Membranes Prepared from Polyurethane and Silica Blends Through a Two-Fluid Coaxial Electrospun Process Huang;YS;Kuo;CC;Shu;YC;Jang;SC;Tsen;WC;Chuang;FS;Chen;CC
臺大學術典藏 2018-09-10T07:34:46Z Highly anisotropic beam patterns for a pot-like ultrasonic sensor with penetrating slots configuration KUANG-CHONG WU;Lee, C.-K.;Wu, K.-C.;Wu, W.-J.;Lin, C.-Y.;Cheng, C.-C.; Cheng, C.-C.; Lin, C.-Y.; Wu, W.-J.; Wu, K.-C.; Lee, C.-K.; KUANG-CHONG WU
臺大學術典藏 2020-01-17T07:48:41Z Highly anisotropic beam patterns for a pot-like ultrasonic sensor with penetrating slots configuration WEN-JONG WU;Lee, C.-K.;Wu, K.-C.;Wu, W.-J.;Lin, C.-Y.;Cheng, C.-C.; Cheng, C.-C.; Lin, C.-Y.; Wu, W.-J.; Wu, K.-C.; Lee, C.-K.; WEN-JONG WU
臺大學術典藏 2020-04-28T07:12:17Z Highly anisotropic beam patterns for a pot-like ultrasonic sensor with penetrating slots configuration CHIH-KUNG LEE; Lee, C.-K.; Wu, K.-C.; Wu, W.-J.; Lin, C.-Y.; Cheng, C.-C.; Cheng, C.-C.;Lin, C.-Y.;Wu, W.-J.;Wu, K.-C.;Lee, C.-K.
國立交通大學 2019-04-03T06:40:50Z Highly anisotropic metasurface: a polarized beam splitter and hologram Zheng, Jun; Ye, Zhi-Cheng; Sun, Nan-Ling; Zhang, Rui; Sheng, Zheng-Ming; Shieh, Han-Ping D.; Zhang, Jie
國立交通大學 2014-12-08T15:02:39Z Highly automatic measurement system for three orthogonal magnetic moments of a permanent magnet block Hwang, CS; Yeh, ST; Teng, PK; Uen, TM
淡江大學 2018-05 Highly autonomous visualization map-generation mobile robot system design through the robot operating system platform Shih-An Li, Hsuan-Ming Feng, Kung-Han Chen and Wen-Hung Huang
臺北醫學大學 2017-10 Highly bioavailable silibinin nanoparticles inhibit HCV infection. Ching-Hsuan Liu, Chun-Ching Lin, Wen-Chan Hsu, Chueh-Yao Chung, Chih-Chan Lin, Alagie Jassey, Shun-Pang Chang, Chen-Jei Tai, Cheng-Jeng Tai, Justin Shields, Christopher D Richardson, Ming-Hong Yen, D Lorne J Tyrrell, Liang-Tzung Lin; 林良宗
國家衛生研究院 2012-04 Highly biocompatible, hollow coordination polymer nanoparticles as cisplatin carriers for efficient intracellular drug delivery Lian, HY;Hu, M;Liu, CH;Yamauchi, Y;Wu, KCW
臺大學術典藏 2018-09-10T09:18:26Z Highly biocompatible, hollow coordination polymer nanoparticles as cisplatin carriers for efficient intracellular drug delivery Lian, H.-Y.; Hu, M.; Liu, C.-H.; Yamauchi, Y.; Wu, K.C.-W.; KEVIN CHIA-WEN WU
臺大學術典藏 2012 Highly Biocompatible, Hollow Coordination Polymer Nanoparticles as Cisplatin Carriers for Efficient Intracellular Drug Delivery. Wu, Kevin C.-W.; Yamauchi, Yusuke; Liu, Chia-Hung; Hu, Ming; Lian, Hong-Yuan; Lian, Hong-Yuan;Hu, Ming;Liu, Chia-Hung;Yamauchi, Yusuke;Wu, Kevin C.-W.
國立臺灣大學 2012 Highly Biocompatible, Hollow Coordination Polymer Nanoparticles as Cisplatin Carriers for Efficient Intracellular Drug Delivery. Lian, Hong-Yuan; Hu, Ming; Liu, Chia-Hung; Yamauchi, Yusuke; Wu, Kevin C.-W.

Showing items 472711-472735 of 2348617  (93945 Page(s) Totally)
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