Depleted-heterojunction colloidal quantum dot photovoltaics employing low-cost electrical contacts

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Abstract

With an aim to reduce the cost of depleted-heterojunction colloidal quantum dot solar cells, we describe herein a strategy that replaces costly Au with a low-cost Ni-based Ohmic contact. The resultant devices achieve 3.5% Air Mass 1.5 power conversion efficiency. Only by incorporating a 1.2-nm-thick LiF layer between the PbS quantum dot film and Ni, we were able to prevent undesired reactions and degradation at the metal-semiconductor interface. © 2010 American Institute of Physics.

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Debnath, R., Greiner, M. T., Kramer, I. J., Fischer, A., Tang, J., Barkhouse, D. A. R., … Sargent, E. H. (2010). Depleted-heterojunction colloidal quantum dot photovoltaics employing low-cost electrical contacts. Applied Physics Letters, 97(2). https://doi.org/10.1063/1.3463037

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