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个人简介

B.S. A.C. National Taiwan University, 1998 M.S. A.C. National Taiwan University, 2000 PhD. M.S.E. The University of Tokyo , Japan, 2005

研究领域

Synthesis and Application of Mesoporous Materials Mesoporous materials have attracted much attention both in basic preparation and practical applications because of their large surface area, ordered structures, and uniform pore sizes. Our research focuses on the synthesis of such materials and we also attempt to apply these materials, in photo-electronic, energy, and bio-medicine applications. For the synthesis of the materials, we combine the bottom-up self-assembly chemistry with top-down lithographic technique to fabricate advanced functionalized mesoporous materials. The processes we used include both chemical synthesis and engineering fabrication. We therefore study the effects of various synthetic conditions on the phase transformation of mesostructures, the generation and analysis of mesostructures, and the functionalization of the obtained materials. For the application of the materials, we currently are interested in applying our materials in the following three areas: 1. Photo-electronic: Dye-sensitized solar cells. 2. Energy: Green energy, fuel cells. 3. Bio-medicine: Drug/gene delivery and controlled release. Based on the basic and practical researches, we hope that we not only produce new materials but also contribute to human health and environmental sustainability.

近期论文

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E. Doustkhah, J. J. Lin, S. Rostamnia, C. Len, R. Luque, X. L. Luo, Y. Bando, K. C. W. Wu, J. Kim, Y. Yamauchi and Y. Ide, “Development of Sulfonic-Acid-Functionalized Mesoporous Materials: Synthesis and Catalytic Applications”, Chemistry-a European Journal, 25(7), 1614-1635, 2019(Feb), (IF: 5.16) B. M. Matsagar, Z. Y. Wang, C. Sakdaronnarong, S. S. Chen, D. C. W. Tsang and K. C. W. Wu, “Effect of Solvent;Role of Formic Acid and Rh/C Catalyst for the Efficient Liquefaction of Lignin”, Chemcatchem, 11(18), 4604-4616, 2019(Sep), (IF: 4.495) Y. Y. Huang, H. Konnerth, J. Y. Yeh, M. H. G. Prechtl, C. Y. Wen and K. C. W. Wu, “De novo synthesis of Cr-embedded MOF-199 and derived porous CuO/CuCr2O4 composites for enhanced phenol hydroxylation”, Green Chemistry, 21(8), 1889-1894, 2019(Apr), (IF: 9.405), Selected as Front Cover Y. T. Liao, C. H. Liu, Y. Chin, S. Y. Chen, S. H. Liu, Y. C. Hsu and K. C. W. Wu, “Biocompatible and multifunctional gold nanorods for effective photothermal therapy of oral squamous cell carcinoma”, Journal of Materials Chemistry B, 7(28), 4451-4460, 2019(Jul), (IF: 4.776) C. C. Chueh, C. I. Chen, Y. A. Su, H. Konnerth, Y. J. Gu, C. W. Kung and K. C. W. Wu, “Harnessing MOF materials in photovoltaic devices: recent advances;challenges;and perspectives”, Journal of Materials Chemistry A, 7(29), 17079-17095, 2019(Aug), (IF: 10.733), Selected as Front Cover L.-H. Yeh, Z.-Y. Huang, Y.-C. Liu, M.-J. Deng, T.-H. Chou, H.-C. Ou Yang, T. Ahamad, Saad M. Alshehri and K. C. W. Wu, “A nanofluidic osmotic power generator demonstrated in polymer gel electrolytes with substantially enhanced performance”, Journal of Materials Chemistry A, 7(47), 26791-26796, 2019(Nov), (IF: 10.733) Y. C. Liu, C. Y. Chen, G. S. Lin, C. H. Chen, K. C. W. Wu, C. H. Lin and K. L. Tung, “Characterization and molecular simulation of Pebax-1657-based mixed matrix membranes incorporating MoS2 nanosheets for carbon dioxide capture enhancement”, Journal of Membrane Science, 582, 358-366, 2019(Jul), (IF: 7.015) V. Malgras, J. Tang, J. Wang, J. Kim, N. L. Torad, S. Dutta, K. Ariga, M. S. A. Hossain, Y. Yamauchi and K. C. W. Wu, “Fabrication of Nanoporous Carbon Materials with Hard- and Soft-Templating Approaches: A Review”, Journal of Nanoscience and Nanotechnology, 19(7), 3673-3685, 2019(Jul), (IF: 1.354) S. Balciunas, M. Simenas, D. Pavlovaite, M. Kinka, F. K. Shieh, K. C. W. Wu, J. Banys and R. Grigalaitis, “Low-Frequency Dipolar Dynamics and Atmospheric Effects in ZIF-90 Metal-Organic Framework”, Journal of Physical Chemistry C, 123(1), 631-636, 2019(Jan), (IF: 4.309) M. H. Lee, S. Y. Wang, W. H. Chiang, H. Feng, T. Y. Huang, M. H. Yeh, K. C. W. Wu and K. C. Ho, “Platinum nanoparticles decorated graphene nanoribbon with eco-friendly unzipping process for electrochemical sensors”, Journal of the Taiwan Institute of Chemical Engineers, 96, 566-574, 2019(Mar), (IF: 3.834) V. Veeramani, B. M. Matsagar, Y. Yamauchi, A. Y. Badjah, M. Naushad, M. Habila, S. Wabaidur, Z. A. Alothman, Z. L. Wang and K. C. W. Wu, “Metal organic framework derived nickel phosphide/graphitic carbon hybrid for electrochemical hydrogen generation reaction”, Journal of the Taiwan Institute of Chemical Engineers, 96, 634-638, 2019(Mar), (IF: 3.834) A. F. M. El-Mandy, Y. H. Hung, T. H. Mansoure, H. H. Yu, Y. S. Hsu, K. C. W. Wu and S. W. Kuo, “Synthesis of [3+3] beta-ketoenamine-tethered covalent organic frameworks (COFs) for high-performance supercapacitance and CO2 storage”, Journal of the Taiwan Institute of Chemical Engineers, 103, 199-208, 2019(Oct), (IF: 3.834) J. H. Khan, F. Marpaung, C. Young, J. J. Lin, M. T. Islam, S. M. Alsheri, T. Ahamad, N. Alhokbany, K. Ariga, L. K. Shrestha, Y. Yamauchi, K. C. W. Wu, M. S. A. Hossain and J. Kim, “Jute-derived microporous/mesoporous carbon with ultra-high surface area using a chemical activation process”, Microporous and Mesoporous Materials, 274, 251-256, 2019(Jan), (IF: 4.182) C. V. Nguyen, B. M. Matsagar, J. Y. Yeh, W. H. Chian and K. C. W. Wu, “MIL-53-NH2-derived carbon-Al2O3 composites supported Ru catalyst for effective hydrogenation of levulinic acid to gamma-valerolactone under ambient conditions”, Molecular Catalysis, 475, 2019(Oct), (IF: 2.938) B. Yuliarto, N. L. W. Septiani, Y. V. Kaneti, M. Iqbal, G. Gumilar, M. Kim, J. Na, K. C. W. Wu and Y. Yamauchi, “Green synthesis of metal oxide nanostructures using naturally occurring compounds for energy, environmental, and bio-related applications”, New Journal of Chemistry, 43(40), 15846-15856, 2019(Sep), (IF: 3.069) B. M. Matsagar, T. C. Kang, Z. Y. Wang, T. Yoshikawa, Y. Nakasaka, T. Masuda, L. C. Chuang and K. C. W. Wu, “Efficient liquid-phase hydrogenolysis of a lignin model compound (benzyl phenyl ether) using a Ni/carbon catalyst Electronic supplementary information (ESI) available. See DOI: 10.1039/c8re00304a”, Reaction Chemistry & Engineering, 4(3), 618-626, 2019(Mar), (IF: 3.935) C.-H. Liu, H.-C. Chiu, H.-L. Sung, J.-Y. Yeh, K. C. W. Wu and S.-H. Liu, “Acute oral toxicity and repeated dose 28-day oral toxicity studies of MIL-101 nanoparticles”, Regulatory Toxicology and Pharmacology, 107, 104426, 2019(Oct), (IF: 2.031) S. Dutta, J. Kim, P. H. Hsieh, Y. S. Hsu, Y. V. Kaneti, F. K. Shieh, Y. Yamauchi and K. C. W. Wu, “Nanoarchitectonics of Biofunctionalized Metal-Organic Frameworks with Biological Macromolecules and Living Cells”, Small Methods, 3(11), 2019(Nov) J. Sonar, S. Pardeshi, S. Dokhe, R. Pawar, K. Kharat, A. Zine, B. Matsagar, K. C. W. Wu and S. Thore, “An efficient method for the synthesis of 2,4,5-trisubstituted imidazoles using lactic acid as promoter”, SN Applied Sciences, 1(9), 1045, 2019(Aug) C.-W. Huang, V.-H. Nguyen, S.-R. Zhou, S.-Y. Hsu, J.-X. Tan and K. C. W. Wu, “Metal–organic frameworks: preparation and applications in highly efficient heterogeneous photocatalysis”, Sustainable Energy & Fuels, 2019(Nov), (IF: 4.912), In press

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