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楊家銘
2023-05-13 19:30
  • 楊家銘
  • 楊家銘 - 教授-台湾清华大学-理学院-个人资料

近期热点

资料介绍

个人简历


學歷:
國立清華大學博士(2002)
國立清華大學碩士(1996)
國立清華大學學士(1994)
經歷:
2014 ~ 國立清華大學教授
2009 ~ 2014國立清華大學副教授
2004 ~ 2009國立清華大學助理教授
2002 ~ 2004博士後研究:德國馬克斯普朗克煤炭研究所

專利:
1.楊家銘,陳柏凱,胡佑維
具介孔洞結構之金屬空心圓球及其製作方法
Taiwan, R. O. C. Patent, No. 454315, dated 10/01/2014
2.Yang, C.-M.; Chang, L.-L. ; Ku, P.-H. ; Lai, N.-C.; Li, K.-Y.
Hollow Sphere with Mesoporous Structure and Method for Manufacturing the Same
US Patent No. 8747793 B2, dated 06/10/2014
3.楊家銘,張莉琳,古珮欣,賴念筑,李冠儀
具介孔洞結構之空心圓球及其製作方法
Taiwan, R. O. C. Patent, No. 447069, dated 08/01/2014
4.Chen, P.-K.; Ho, C.-H.; Yang, C.-M.
Method for Preparing Nitride Nanomaterials
US Patent No. 8679440 B2, dated 03/25/2014
5.饒達仁,楊家銘,鄭桂忠,郝旭昶,趙哲新,古珮欣,李承漢
一種氣體偵測裝置及其方法
Taiwan, R. O. C. Patent, No. 427290, dated 02/21/2014
何佳安,王立昇,楊家銘,吳立真
6.磷脂質包覆中孔洞二氧化矽奈米球的合成與其生醫應用
Taiwan, R. O. C. Patent, No. 383808, dated 01/02/2013
7.Yang, C.-M.; Hsu, Y.-C.; Lin, H.-C. ; Liao, Y.-T. ; Lue, C.-W.
Carbon-Coated Metal Oxide Nano-Particles and Method of Preparing the Same
US Patent No. 8110520 B2, dated 27/10/2008
8.Chao, K.-J.; Yang, C.-M.
Method of Fabricating Nanostructured Materials
US Patent No. 6733828 B2, dated 05/11/2004
9.Wu, B.-W.; Pan, F.-M.; Cho, A.-T.; Tsai, T.-G.; Yang, C.-M.; Chao, K.-J.
以非晶質含氫碳化矽薄膜改進奈米孔洞二氧化矽薄膜介電特性之製作方法
Taiwan, R. O. C. Patent, No. 1880025, dated 09/21/2003

10.Yang, C.-M.; Cho, A.-T.; Tsai, T.-G.;Chao, K.-J.; Pan, F.-M.
超低介電常數毫微米孔洞二氧化矽薄膜之製備
Taiwan, R. O. C. Patent, No. 149656, dated 01/01/2002

11.Tsai, T.-G.; Yang, C.-M.; Cho, A.-T.;Pan, F.-M.; Chao, K.-J.
超低介電常數毫微米孔洞二氧化矽薄膜材料之電漿鍛燒製程
Taiwan, R. O. C. Patent, No. 145688, dated 11/11/2001

研究领域


"Physical Chemistry, Materials Chemistry, Heterogeneous Catalysis""物理化學、材料化學、異相催化化學"

近期论文


1.Chang, A.; Hsiao, H.-M.; Chen, T.-H.; Chu, M.-W.; Yang, C.-M.* “Hierarchical Silicalite-1 OctahedraComprising Highly-Branched Orthogonally-Stacked Nanoplates as Efficient Catalysts for Vapor-Phase Beckmann Rearrangement” Chem.Commun., 2016, 52, 11939-11942.

2.Liu, C.-H.; Lin, C.-Y.; Chen, J.-L.; Lai, N.-C.; Yang, C.-M.*; Chen, J.-M.*; Lu, K.-T. “Metal Oxide-Containing SBA-15-Supported Gold Catalysts for Base-Free Aerobic Homocoupling of Phenylboronic Acid in Water” J. Catal., 2016, 336, 49-57.

3.Wu, H.-C.; Chen, T.-C.; Lai, N.-C.; Yang, C.-M.; Wu, J.-H.; Chen, Y.-C.; Lee, J.-F.; Chen, C.-S.* “Synthesis of Sub-nanosizedPt particles on Mesoporous SBA-15 Material and Its Application to the CO Oxidation Reaction” Nanoscale, 2015, 7, 16848-16859.

4.Lin, C.-J.; Huang, S.-H.; Lai, N.-C.; Yang, C.-M.* “Efficient Room-Temperature Aqueous-Phase Hydrogenation of Phenol to Cyclohexanone Catalyzed by Pd Nanoparticles Supported on Mesoporous MMT‑1 Silica with Unevenly Distributed Functionalities” ACS Catal., 2015, 5, 4121-4129.

5.Lai, N.-C.; Liou, S.-C.; Huang, W.-C.; Shen, Y.-T.; Chi, C.-C.; Chu, M.-W.; Yang, C.-M.* “Functional Helical Silica Nanofibers with Coaxial Mixed Mesostructures for the Fabrication of PtCo Nanowires That Display Unique Geometry-Dependent Magnetism” NPG Asia Mater., 2015, 7, e181.

6.Lu, H.-Y.; Chang, Y.-J.; Fan, N.-C.; Wang, L.-S.; Lai, N.-C.; Yang, C.-M.;* Wu, L.-C.;* Ho, J.-A.-A.* “Synergism through Combination of Chemotherapy and Oxidative Stress-induced Autophagy in A549 Lung Cancer Cells Using Redox-responsive Nanohybrids: A New Strategy for Cancer Therapy” Biomaterials, 2015, 42, 30-41.

7.Hsieh, M.-C.; Wu, G.-C.; Liu, W.-G.; Goddard, W. A.; Yang, C.-M.* “Nanocomposites of Tantalum-Based Pyrochlore and Indium Hydroxide Showing High and Stable Photocatalytic Activities for Overall Water Splitting and Carbon Dioxide Reduction” Angew. Chem. Int. Ed., 2014, 53, 14216-14220.

8.Lai, Y.-T.; Chen, T.-C.; Lan, Y.-K.; Chen, B.-S.; You, J.-H.; Yang, C.-M.; Lai, N.-C.; Wu, J.-H.; Chen, C.-S.* “Pt/SBA-15 as a Highly Efficient Catalyst for Catalytic Toluene Oxidation” ACS Catal., 2014, 4, 3824-3836.

9.Lai, N.-C.; Lin, C.-Y.; Ku, P.-H.; Chang, L.-L.; Liao, K.-W.; Lin, W.-T.; Yang, C.-M.* “HollowMesoporousIa3dSilicaNanosphereswith Single-Unit-Cell-Thick Shell: Spontaneous Formation and Drug DeliveryApplication” Nano Res., 2014, 7, 1439-1448.

10.Liu, C.-H.; Lai, N.-C.; Lee, J.-F.; Chen, C.-S.; Yang, C.-M.* “SBA-15-Supported Highly Dispersed Copper Catalysts: Vacuum-Thermal Preparation and Catalytic Studies in Propylene Partial Oxidation to Acrolein” J. Catal. 2014, 316, 231-239.

11.Huang, S.-H.; Liu, C.-H.; Yang, C.-M.* “Efficient Ligand-Free Hiyama Cross-Coupling Reaction Catalyzed by Functionalized SBA-15-Supported Pd Nanoparticles”Green Chem., 2014, 16, 2706-2712.

12.Lai, N.-C.; Lin, C.-J.; Huang, W.-C.; Yang, C.-M.* ““pH-Jump” Synthesis of 2D-Rectangular c2mm Mesoporous Silica Materials with Helical Morphology and Extensive Void Defects” Microporous Mesoporous Mater., 2014, 190, 67-73.

13.Chen, P.-K.; Lai, N.-C.; Ho, C.-H.; Hu, Y.-W.; Lee, J.-F.; Yang, C.-M.* “New Synthesis of MCM-48 Nanospheres and Facile Replication to Mesoporous Platinum Nanospheres as Highly Active Electrocatalysts for the Oxygen Reduction Reaction” Chem. Mater.2013, 25, 4269-4277.

14.Lai, C.-H.; Lai, N.-C.; Chuang, Y.-J.; Chou, F.-I.; Yang, C.-M.*; Lin, C.-C.* “Trivalent Galactosyl-Functionalized Mesoporous Silica Nanoparticles as a Target-Specific Delivery System for Boron Neutron Capture Therapy” Nanoscale2013, 5, 9412-9418.

15.Teng, I.-T.; Chang, Y.-J.; Wang, L.-S.; Lu, H.-Y.; Wu, L.-C.;* Yang, C.-M.*; Chiu, C.-C.; Yang, C.-H.; Hsu, S.-L.; Ho, J.-A.-A.* “Phospholipid-Functionalized Mesoporous Silica Nanocarriers for Selective Photodynamic Therapy of Cancer” Biomaterials2013, 34, 7462-7470.

16.Wang, Y.-F.; Hsieh, M.-C.; Lee, J.-F.; Yang, C.-M.* “Nonaqueous Synthesis of CoOx/TiO2Nanocomposites Showing High Photocatalytic Activity of Hydrogen Generation” Appl. Catal. B: Environ.2013, 142-143, 626-632.

17.Liu, C.-H.; Lai, N.-C.; Liou, S.-C.; Chu, M.-W.; Chen, C.-H.; Yang, C.-M.* “Deposition and Thermal Transformation of Metal Oxides in Mesoporous SBA-15 Silica with Hydrophobic Mesopores” Microporous Mesoporous Mater.2013, 179, 40-47.

18.Chang, A.; Lai, N.-C.; Yang, C.-M.* “MCM-48 Nanorods: A Self-Assembled Isotropic Cubic Mesostructure with Anisotropic Morphology” RSC Advances2012, 2, 12088-12090.

19.Ku, P.-H.; Hsiao, C.-Y.; Chen, M.-J.; Lin, T.-H.; Li, Y.-T.; Liu, S.-C.; Tang, K.-T.; Yao, D.-J.; Yang, C.-M.* “Polymer/Ordered Mesoporous Carbon Nanocomposite Platelets asSuperior Sensing Materials for Gas Detection with Surface AcousticWave Devices” Langmuir2012, 28, 11639-11645.

20.Chen, C.-H.; Liu, C.-H.; Su, Y.-C.; Yang, C.-M.* “Surface-Modified Anatase Nanocrystalline Building Blocks for Constructing Catalytically Highly Active Nanoporous TitaniaMaterials”Appl. Catal. B: Environ.2012, 123-124, 36-42.

21.Huang, W.-C.; Lai, N.-C.; Chang, L.-L.; Yang, C.-M.* “Mercaptopropyl-Functionalized Helical Mesoporous Silica Nanoparticles with c2mm Symmetry: Cocondensation Synthesis and Structural Transformation in the Dilute Solution of Mixed Cationic and Nonionic Surfactants” Microporous Mesoporous Mater.2012, 151, 411-417.

22.Liu, C.-H.; Guan, Y.; Hensen, E. J. M.; Lee, J.-F.; Yang, C.-M.* “Au/TiO2@SBA-15 Nanocomposites as Catalysts for Direct Propylene Epoxidation with O2 and H2Mixtures”J. Catal. 2011, 282, 94-102.

23.Huang, W.-C.; Chang, L.-L.; Sakamoto, Y.; Lin, C.-Y.; Lai, N.-C.; Yang, C.-M.* “Kinetically Controlled Formation of Helical Mesoporous Silica Nanostructures Correlated to a Ribbon Intermediate Phase”RSC Advances 2011, 1, 229-237.

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