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DuPont Kapton Colorless Polyimide Film Offers Record Conversion EfficiencyAccording to Empa, a Research Institute for Materials Science and Technology in Switzerland, Kapton colorless polyimide film being developed by DuPont has achieved 13.8% conversion efficiency when used as a flexible superstrate for thin-film cadmium telluride (CdTe)-based photovoltaic modules.
Economical and ultra-speed roll-to-roll deposition technologies can be used for mass production of flexible solar cells using polymer film as substrates. The Kapton polyimide film demonstrates superior mechanical, chemical and thermal properties that tolerate ultra-high temperatures and other challenging conditions. Due to its durability and high performance, the film is ideal for photovoltaic applications. In 2010, DuPont released three new films under its Kapton PV9100 series for the thin film photovoltaic market, including products for copper indium gallium selenide and amorphous silicon photovoltaic modules. For more than four decades, the polyimide film has been providing advanced design solutions to various industries such as automotive and aerospace. The Thin Films and Photovoltaics Laboratory of Empa is designing high-efficacy thin film solar cells with specific focus on performance improvement, simplification of fabrication methods and development of device structures for advanced, low-cost and high-efficient devices. According to the head of the laboratory, Ayodhya N. Tiwari, the Kapton colorless polyimide film’s high temperature tolerance and superior light transmittance properties have allowed it to achieve record conversion efficacy for flexible CdTe solar cell. 14.06.2011, DuPont/azom.com News material on the Site is copyright and belongs to the Company or to its third party news provider, and all rights are reserved. Any User who accesses such material may do so only for its own personal use, and the use of such material is at the sole risk of the User. Redistribution or other commercial exploitation of such news material is expressly prohibited. Where such news material is provided by a third party, each User agrees to observe and be bound by the specific terms of use applying to such news material. We do not represent or endorse the accuracy or reliability of any of the info contained in any news or external websites referred to in the news.
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