4.8 Article

A Lightweight Polymer Solar Cell Textile that Functions when Illuminated from Either Side

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 53, Issue 43, Pages 11571-11574

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201407688

Keywords

carbon nanotubes; electrochemistry; energy conversion; polymers; solar cells

Funding

  1. MOST [2011CB932503]
  2. NSFC [21225417]
  3. STCSM [12nm0503200]
  4. Fok Ying Tong Education Foundation
  5. Program for Special Appointments of Professors at Shanghai Institutions of Higher Learning
  6. Program for Outstanding Young Scholars from the Organization Department of the CPC Central Committee

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An all-solid-state, lightweight, flexible, and wearable polymer solar cell (PSC) textile with reasonable photovoltaic performance has been developed. A metal textile electrode made from micrometer-sized metal wires is used as the cathode, and the surfaces of the metal wires are dip-coated with the photoactive layers. Two ultrathin, transparent, and aligned carbon nanotube sheets that exhibit remarkable electronic and mechanical properties were coated onto the modified metal textile at both sides as the anode to produce the desired PSC textile. Because of the designed sandwich structure, the PSC textile displays the same energy conversion efficiencies regardless of which side it is irradiated from. As expected, the PSC textiles are highly flexible, and their energy conversion efficiencies varied by less than 3% after bending for more than 200cycles. The PSC textile shows an areal density (5.9mgcm(-2)) that is lower than that of flexible film-based PSCs (31.3mgcm(-2)).

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