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¡¾ÏÖÔÚÇóѧor¹¤×÷¡¿£º¹¤×÷ ¡¾Ëùѧרҵ¡¢¾ßÌå·½Ïò¡¿£º»¯Ñ§ÎïÀí ¡¾Ñо¿ÁìÓò¡¿£ºMy current research focused on the preparation, characterization, fundamental understanding and application of photovoltaic and photocatalytic nanomaterials. Of particular interest are fundamental optical properties and dynamical processes in the materials and their interfaces (such as excitation, charge transfer, energy transfer and relaxation) which are not only essential to their functions, but also relevant to many other materials and applications. I utilize state-of-the-art laser spectroscopic and imaging techniques to investigate these processes. Theoretical calculations were used to help to explain the results. I aimed at achieving fundamental understanding of these processes, and thereby advance the rational design and preparation of materials with much better performance. ¡¾Éó¤ÁìÓò¡¿£ºÖ÷ÒªÉó¤Í¨¹ýÒÔÏÂÊÖ¶ÎÑо¿²ÄÁϹâѧÐÔÖÊ£º1.¼¤¹â¹âÆ×ѧ ÀÂü¡¢Ë²Ì¬ºÍÎÈ̬ӫ¹â£¬Ë²Ì¬ÎüÊÕµÈ 2.2P-PEEM ºÍ CL 3.ÀíÂÛ¼ÆË㣺°üÀ¨µÚÒ»ÐÔÔÀí£¬·Ö×Ó¶¯Á¦Ñ§£¬µç´ÅѧģÄâµÈ ¡¾Ï£ÍûÔÚºÎÁìÓòÓë³æÓѽ»Á÷¡¿£º²ÄÁϱíÕ÷¼°Æä¹âѧÐÔÖÊ ¡¾¾³£ºÎʱ¶ÎÔÚÏß¡¿£º±±¾©Ê±¼ä21:00-´ÎÈÕ12£º00 ¡¾Ç°ÑØÁìÓò½éÉÜ¡¿£ºMetalliic and semiconductor nanomaterials exhibits lots of novel properties. They are good candiate for electronics, photonics, energy, and biomedicine. A fundamental understanding of the structure-dependent localized optical properties of nanostructures with sub-10 nm resolution will lead to comprehensive knowledge of the surface plasmon-directed growth of novel anisotropic nanostructures, and design rules for the synthesis and fabrication of hybrid nanostructures with optimized properties for solar energy harvesting, conversion and storage, photocatalysis, and chemical and biological detection. All these projects are high impact and interdisciplinary in nature that combine analytical chemistry, physical chemistry, inorganic chemistry and materials science. ¸½¼þΪºÜ¶àÖÖ²ÄÁϵĹâѧ²ÎÊý [ Last edited by donkeypku on 2011-5-8 at 02:35 ] |
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