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Solution-processed all-oxide nanostructures for heterojunction solar cells
Journal article   Peer reviewed

Solution-processed all-oxide nanostructures for heterojunction solar cells

Hui-Ying Shiu, Chung-Min Tsai, Szu-Ying Chen and Tri-Rung Yew
Journal of Materials Chemistry, Vol.21(44), pp.17646-17650
28/11/2011

Abstract

A low-cost, non-toxic, environmentally friendly, and solution-processed new oxide-based semiconducting material (Sn 1-x Co x O 2 ) was developed as an absorption material for all oxide solar cell fabrication in this work. The newly developed n-type cobalt-doped tin oxide (n-Sn 1-x Co x O 2 ) nanoparticles and p-type copper oxide (p-Cu 2 O) nanostructures were successfully synthesized via a low-temperature solution process. Combined with the use of non-vacuum spray and hot-press processes, the n-Sn 1-x Co x O 2 /p-Cu 2 O heterojunction solar cells exhibit low-cost and large-scale fabrication advantages. The highest power conversion efficiency (PCE) of 1.2% can be obtained from the solar cells with n-Sn 0.86 Co 0.14 O 2 /p-Cu 2 O, under AM 1.5 illumination, a noteworthy improvement in solution-processed all-oxide-based nanostructures heterojunction solar cells. © 2011 The Royal Society of Chemistry.

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