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Vacuum-deposited interconnection layers for tandem solar cells
Journal article   Peer reviewed

Vacuum-deposited interconnection layers for tandem solar cells

Yi-Hong Chen, Chang-Wen Chen, Zheng-Yu Huang, Ken-Tsung Wong, Li-Yen Lin, Francis Lin and Hao-Wu Lin
Organic Electronics: physics, materials, applications, Vol.15(8), pp.1828-1835
2014

Abstract

Interconnection layer Organic solar cell Small molecule Tandem cell
Two different types of vacuum-deposited interconnection layers (ICLs) were investigated for tandem solar cells: (1) a pure metal oxide and (2) an organic matrix doped with conductive dopants. The optical and electrical properties of these ICLs were systematically studied and compared. Taking the characteristics of ICLs into consideration, optical design methodology for balancing the photocurrent of each sub-cell in the tandem cell is presented. According to the design, highly efficient small-molecule tandem solar cells with power conversion efficiencies up to 7.3%-7.4% were experimentally demonstrated in both devices utilizing pure metal oxide and organic matrix ICLs. © 2014 Elsevier B.V. All rights reserved.

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