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An effective bilayer cathode buffer for highly efficient small molecule organic solar cells
Journal article   Peer reviewed

An effective bilayer cathode buffer for highly efficient small molecule organic solar cells

Hao-Wu Lin, Hao-Wei Kang, Zheng-Yu Huang, Chang-Wen Chen, Yi-Hong Chen, Li-Yen Lin, Francis Lin and Ken-Tsung Wong
Organic Electronics: physics, materials, applications, Vol.13(10), pp.1925-1929
10/2012

Abstract

Cathode buffer Electron transporting layer Organic photovoltaics Small molecule solar cells
Novel organic/ultrathin low work function metal bilayer cathode buffers for small molecule organic solar cells are proposed. Ultrathin low work function metal layers possess a high built-in electric field for effective carrier extraction and a high cathode reflectivity for maximum absorption in the photoactive layers. This leads to a significant increase of short circuit current density and fill factor of cells. By integrating this bilayer cathode buffer with DTDCTB:C 60 small molecular heterojunction, the device exhibits a high power conversion efficiency of up to 5.28%, which is an improvement of 22% compared to a device with a traditional single organic layer buffer. © 2012 Elsevier B.V. All rights reserved.

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