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Solution Processing of Device Quality CIGS Absorber Layers

Dr David B Mitzi, Research Staff Member, Physical Sciences Dept
IBM Corporation / Thomas J Watson Research Center, USA
United States
 
 
This presentation was given at Printed Electronics & Photovoltaics USA 2009 on 2009年12月3日.
 

プレゼンテーション概要

  • non-vacuum deposition approach for chalcopyrite-based solar cells
  • targeting low-cost high-efficiency thin-film PV
  • 12+% efficiency devices achieved using spin-coated absorber layer

講演者の経歴 (David B Mitzi)

 
David Mitzi received a B.S.E. in Electrical Engineering from Princeton University in 1985 and a Ph.D. in Applied Physics from Stanford University in 1990. In 1990, he joined the I.B.M. T. J. Watson Research Center where he initiated a program examining crystal structure-property relationships and low-cost thin-film deposition techniques for a variety of electronic materials. Currently, he manages the Photovoltaic Science and Technology group at IBM, with a focus on developing solution-processed high-performance inorganic semiconductors for thin-film PV devices. He holds a number of patents and has authored or coauthored more than 140 papers and book chapters.

会社紹介 (IBM)

Goal: create a powerful new battery for electric cars
  • as good as gasoline
  • 500 miles/800 km range per charge
  • a total electric drive system comparable in size, weight and price to a gasoline drive train
Technical Approach:
  • a lightweight 'air-cathode' replaces heavy metal-oxide cathods of today
  • encapsulated Lithium metal anode
Outlook:
  • this is a very high risk/very high reward, long horizon project
  • 3 years basic science, know of commercial applications before ~2020
  • joined research effort with National Labs and commercial partners
  • if successful, such batteries could dramatically reduce oil dependency

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Low-Temperature Solution-Processed CuInSSe Thin-Film Solar Cell
Dr William Hou, UCLA, USA at Printed Electronics & Photovoltaics USA 2009

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