| 臺大學術典藏 |
2021-09-09T05:25:28Z |
Synthesis and characterization of poly(N-isopropylacrylamide-co-acrylamide) mesoglobule core�Vsilica shell nanoparticles
|
Cao-Luu N.-H.; Pham Q.-T.; ZONG-HAN YAO; Wang F.-M.; Chern C.-S. |
| 臺大學術典藏 |
2021-09-09T05:25:28Z |
Synthesis and characterization of PNIPAM microgel core�Vsilica shell particles
|
Cao-Luu N.-H.; Pham Q.-T.; ZONG-HAN YAO; Wang F.-M.; Chern C.-S. |
| 臺大學術典藏 |
2021-09-09T05:25:27Z |
Synthesis and characterization of poly(N-isopropylacrylamide-co-N,N��-methylenebisacrylamide-co-acrylamide) core �V Silica shell nanoparticles by using reactive surfactant polyoxyethylene alkylphenyl ether ammonium sulfate
|
Cao-Luu N.-H.; Pham Q.-T.; ZONG-HAN YAO; Wang F.-M.; Chern C.-S. |
| 臺大學術典藏 |
2021-09-02T00:04:24Z |
Field-effect pump: liquid dielectrophoresis along a virtual microchannel with source-gate-drain electric fields
|
Wang F.-M;Lu I.-P;Lin C.-T;Lu S.-S;Fan S.-K.; Wang F.-M; Lu I.-P; Lin C.-T; Lu S.-S; Fan S.-K.; CHIH-TING LIN |
| 臺大學術典藏 |
2021-08-03T01:43:32Z |
Catalytically Active Site Identification of Molybdenum Disulfide as Gas Cathode in a Nonaqueous Li-CO2Battery
|
Chen C.-J;Huang C.-S;Huang Y.-C;Wang F.-M;Wang X.-C;Wu C.-C;Chang W.-S;Dong C.-L;Yin L.-C;Liu R.-S.; Chen C.-J; Huang C.-S; Huang Y.-C; Wang F.-M; Wang X.-C; Wu C.-C; Chang W.-S; Dong C.-L; Yin L.-C; Liu R.-S.; RU-SHI LIU |
| 臺大學術典藏 |
2021-08-03T01:43:31Z |
Comparative Study of Li-CO2and Na-CO2Batteries with Ru@CNT as a Cathode Catalyst
|
Thoka S;Tsai C.-M;Tong Z;Jena A;Wang F.-M;Hsu C.-C;Chang H;Hu S.-F;Liu R.-S.; Thoka S; Tsai C.-M; Tong Z; Jena A; Wang F.-M; Hsu C.-C; Chang H; Hu S.-F; Liu R.-S.; RU-SHI LIU |
| 臺大學術典藏 |
2021-08-03T01:43:28Z |
High-performance Na-CO2batteries with ZnCo2O4@CNT as the cathode catalyst
|
Thoka S;Tong Z;Jena A;Hung T.-F;Wu C.-C;Chang W.-S;Wang F.-M;Wang X.-C;Yin L.-C;Chang H;Hu S.-F;Liu R.-S.; Thoka S; RU-SHI LIU et al. |
| 臺大學術典藏 |
2021-08-03T01:43:22Z |
Spinel Zinc Cobalt Oxide (ZnCo2O4) Porous Nanorods as a Cathode Material for Highly Durable Li-CO2 Batteries
|
Thoka S;Chen C.-J;Jena A;Wang F.-M;Wang X.-C;Chang H;Hu S.-F;Liu R.-S.; Thoka S; Chen C.-J; Jena A; Wang F.-M; Wang X.-C; Chang H; Hu S.-F; Liu R.-S.; RU-SHI LIU |
| 臺大學術典藏 |
2020-03-02T05:45:40Z |
A high-density microelectrode-tissue-microelectrode sandwich platform for application of retinal circuit study
|
Yang F.; Yang C.-H.; Wang F.-M.; Cheng Y.-T.; Teng C.-C.; LI-JEN LEE; Fan L.-S. |
| 臺大學術典藏 |
2020-01-17T07:45:18Z |
A fully model-based methodology for simultaneously correcting EUV mask shadowing and optical proximity effects with improved pattern transfer fidelity and process windows
|
Ng, P.C.W.; Tsai, K.-Y.; Lee, Y.-M.; Pei, T.-H.; Wang, F.-M.; Li, J.-H.; Chen, A.C.; JIA-HAN LI |
| 臺大學術典藏 |
2020-01-17T07:45:17Z |
Efficient scattering simulations for equivalent extreme ultraviolet mask multilayer structures by modified transmission line theory and finite-difference time-domain method
|
Lee, Y.-M.; Li, J.-H.; Ng, P.C.W.; Pei, T.-H.; Wang, F.-M.; Tsai, K.-Y.; Chen, A.C.; JIA-HAN LI |
| 臺大學術典藏 |
2020-01-17T07:45:17Z |
Using transmission line theory to calculate equivalent refractive index of EUV mask multilayer structures for efficient scattering simulation by finite-difference time-domain method
|
Lee, Y.-M.; Li, J.-H.; Ng, P.C.W.; Pei, T.-H.; Wang, F.-M.; Tsai, K.-Y.; Chen, A.C.; JIA-HAN LI |
| 臺大學術典藏 |
2020-01-17T07:45:16Z |
Erratum: Fully model-based methodology for simultaneous correction of extreme ultraviolet mask shadowing and proximity effects (Journal of Micro/ Nanolithography, MEMS, and MOEMS (2011) 10 (013004))
|
Ng, P.C.W.; Tsai, K.-Y.; Lee, Y.-M.; Wang, F.-M.; Li, J.-H.; Chen, A.C.; JIA-HAN LI |
| 臺大學術典藏 |
2020-01-17T07:45:16Z |
Fully model-based methodology for simultaneous correction of extreme ultraviolet mask shadowing and proximity effects
|
Ng, P.C.W.; Tsai, K.-Y.; Lee, Y.-M.; Wang, F.-M.; Li, J.-H.; Chen, A.C.; JIA-HAN LI |
| 臺大學術典藏 |
2020-01-17T07:45:12Z |
Optical scatterometry system for detecting specific line edge roughness of resist gratings subjected to detector noises
|
Lee, Y.-M.; Li, J.-H.; Wang, F.-M.; Cheng, H.-H.; Shen, Y.-T.; Tsai, K.-Y.; Shieh, J.J.; Chen, A.C.; JIA-HAN LI |
| 國立臺灣科技大學 |
2020 |
Biodiesel production by direct transesterification of wet spent coffee grounds using switchable solvent as a catalyst and solvent
|
Nguyen, H.C.;Nguyen, M.L.;Wang, F.-M.;Juan, H.-Y.;Su, C.-H. |
| 國立臺灣科技大學 |
2020 |
Detection of O-glycosylated CA125 by using an electrochemical immunosensor for ovarian cancer diagnosis
|
Wang, F.-M.;Huang, S.-H.;Yuan, C.-C.;Yeh, C.-T.;Chen, W.-L.;Wang, X.-C.;Runprapan, N.;Tsai, Y.-J.;Chuang, Y.-L.;Su, C.-H. |
| 國立臺灣科技大學 |
2020 |
Micro-/mesoporous nature of carbon nanofiber/silica matrix as an effective sulfur host for rechargeable lithium-sulfur batteries
|
Rajkumar, P.;Diwakar, K.;Subadevi, R.;Gnanamuthu, R.M.;Wang, F.-M.;Sivakumar, M. |
| 國立臺灣科技大學 |
2020 |
Effect of bone morphogenic protein-2-loaded mesoporous strontium substitution calcium silicate/recycled fish gelatin 3D cell-laden scaffold for bone tissue engineering
|
Yu, C.-T.;Wang, F.-M.;Liu, Y.-T.;Ng, H.Y.;Jhong, Y.-R.;Hung, C.-H.;Chen, Y.-W. |
| 國立臺灣科技大學 |
2020 |
Spinel Zinc Cobalt Oxide (ZnCo2O4) Porous Nanorods as a Cathode Material for Highly Durable Li-CO2 Batteries
|
Thoka, S.;Chen, Chen C.-J.;Jena, A.;Wang, F.-M.;Wang, X.-C.;Chang, H.;Hu, S.-F.;Liu, R.-S. |
| 國立臺灣科技大學 |
2020 |
Improvement in the electrochemical stability of Li[Ni0.5Co0.2Mn0.3]O2 as a lithium-ion battery cathode electrode with the surface coating of branched oligomer
|
Chemere, E.B.;Wang, F.-M.;Chien, W.-C. |
| 國立臺灣科技大學 |
2020 |
Modification of LiCoO2 through rough coating with lithium lanthanum zirconium tantalum oxide for high-voltage performance in lithium ion batteries
|
Guo, H.-L.;Lin, H.-F.;Yang, Yang Y.-C.;Cheng, Cheng C.-H.;Tsai, Y.-R.;Wang, F.-M. |
| 國立臺灣科技大學 |
2020 |
Mechanism of a Self-Assembling Smart and Electrically Responsive PVDF-Graphene Membrane for Controlled Gas Separation
|
Widakdo, J.;Chiao, Y.-H.;Lai, Y.-L.;Imawan, A.C.;Wang, F.-M.;Hung, W.-S. |
| 國立臺灣科技大學 |
2020 |
N-Doped Graphene Sheet Encapsulated Sulfur Binary Composite as Cathode for Lithium-Sulfur Battery Applications
|
Rajkumar, P.;Diwakar, K.;Krishnaveni, Krishnaveni K.;Radhika, G.;Subadevi, R.;Gnanamuthu, R.M.;Wang, F.-M.;Sivakumar, M. |
| 國立臺灣科技大學 |
2020 |
Maleamic acid as an organic anode material in Lithium-ion batteries
|
Kahsay, B.A.;Wang, F.-M.;Hailu, A.G.;Su, C.-H. |