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ÖøÃûµç»¯Ñ§·ÖÎö¼ÒAllen J. Bard
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°ÍµÂ¿ÉÒÔËãµÃÉϵç·ÖÎö»¯Ñ§ÁìÓòµÄȨÍþÁË£¬¼¸Ê®ÄêÀ´ËûÒ»Ö±ÒýÁì×ŵç·ÖÎö»¯Ñ§Ñо¿µÄÇ°ÑØ£¬ÓÈÆäÔÚµçÖ»¯Ñ§·¢¹âÁìÓò£¬´Ó»úÀíµ½Ó¦Óö¼ÓÐËûµÄ¹¤×÷¡£ ¹Ø×¢ÁìÓòÄÚÅ£È˵Ť×÷£¬»á¶ÔÎÒÃǵŤ×÷ÓÐºÜºÃµÄÆôʾ£¬ÏÂÃæÊÇËûÍøÕ¾ÁгöµÄÑо¿ÁìÓò Ultra high resolution electrochemistry a) Scanning tunneling microscopy (STM) and force microscopy (AFM) of electrode surfaces; AFM measurement of surface charge on electrode and polymer surfaces. b) Scanning electrochemical microscopy (SECM) - new applications, new probes, single molecule experiments, studies of liquid/liquid interface, lipid bilayer membranes. c) Combined SECM/NSOM (near field scanning optical microscopy) and ECL-based NSOM instruments. d) Charge transport (in gas phase) through self-assembled monolayers of compounds of interest in molecular electronics. Properties and charge injection in organic thin films; high resolution charge storage devices (liquid crystal Zn porphyrin¡) Thin film electroluminescent devices based on Ru(bpy)32+ salts. Electrochemical studies of reaction mechanisms of interesting organic and inorganic species a) Electrochromic and electroluminescent polymer films. b) Electrochemistry in ionic liquids (room temperature molten salts) Photoelectrochemistry at semiconductors a) Photoelectrochemical (solar) cells based on semiconductor electrodes b) Photocatalysis at semiconductor particles Electrochemical studies of biological systems; bioconjugation a) Interactions and intercalation of metal chelates and other species with DNA b) Fabrication of DNA modified electrodes. Probing by AFM charge measurements. Electrogenerated chemiluminescence (ECL) and related areas a) Analytical applications through new ECL labels and reactions b) Electrochemistry and ECL of semiconductor nanoparticles (CdS, Si) c) ECL studies of bioconjugation and sensors- DNA d) Mechanisms of ECL reactions; new coreactants °ÍµÂµÄÍøÒ³£ºhttp://research.cm.utexas.edu/abard/ |
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