研究生专题报告

发布时间:2015-04-09浏览次数:2637

题   目:Fundamentals and Applications of Conjugated Polyelectrolytes
报告人:Prof. Kirk S. Schanze
            佛罗里达大学University of Florida
地   点:化学楼图书馆二楼学术报告厅
时   间:2015年4月16日(星期四)上午10:00
联系人:冯福德,fengfd@nju.edu.cn,83592119

摘要:
      Conjugated polyelectrolytes (CPE) feature -conjugated backbones that are functionalized with polar, ionic side chains. These polymers have very strong optical absorptivity due to the conjugated electronic system, and the HOMO-LUMO gap can be controlled by tuning the electronic nature of the monomer units. CPEs are polymer amphiphiles, and consequently they self-assemble in solution into colloidal aggregates, and they can be deposited onto surfaces to afford nanostructured films by using the layer-by-layer method.  Due to the -conjugated backbone, CPEs exhibit photonic properties, exhibiting strong absorption in the visible region and strong fluorescence.  Fundamental studies of the self-assembly of CPEs in solution and at interfaces, along with their application as biosensors and in hybrid solar cells will be discussed.

报告人简介:
E-mail: kschanze@chem.ufl.edu
      Research fields: chemistry  of  photoresponsive  organic and  polymer materials;  electron  and  energy transfer  processes;  photophysics  and  photochemistry;  applications  of  photochemistry; electrochemistry  of  thin  films;  conjugated  polymers;  polymeric  coatings  for luminescence imaging; organic electronics; solar cells.
      Schanze is currently University Distinguished Professor and Prominski Professor of Chemistry at the University of Florida. He was a Senior Editor of the ACS journal Langmuir from 2000 - 2008.  Since 2008, Schanze is Editor-in-Chief of ACS Applied Materials & Interfaces, the ACS journal focused on chemistry and engineering of applications-focused research in materials and interfaces.
      Schanze has authored or co-authored more than 275 peer-reviewed articles (H-index: 58) on basic and applied research topics, with a primary focus on organic and organometallic materials chemistry, and is named in 15 patents or disclosures.

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                                                                             高分子化学与物理学科