High open-circuit voltage in single-crystalline n-type SnS/MoO3 photovoltaics

Author:

Suzuki Issei1ORCID,Lin Zexin1,Nogami Taichi1,Kawanishi Sakiko1ORCID,Huang Binxiang2ORCID,Klein Andreas2ORCID,Omata Takahisa1ORCID

Affiliation:

1. Institute of Multidisciplinary Research for Advanced Materials (IMRAM), Tohoku University 1 , 2-1-1 Katahira, Aoba-ku, Sendai 980-8577, Japan

2. Department of Materials and Earth Science, Electronic Structure of Materials, Technical University of Darmstadt 2 , Otto-Berndt-Str. 3, 64287 Darmstadt, Germany

Abstract

It has been recently reported that n-type single crystalline SnS exhibits a large band bending (∼1 eV) at the interface with MoO3, which is a large work function material. In this study, we applied this interface to solar cells for the first time and evaluated its photovoltaic properties. The highest VOC achieved was 437 mV. Although this value is the highest ever recorded for SnS solar cells, it was lower than the expected value of 700–800 mV. The highest power conversion efficiency (PCE) was 4.4%. Based on an analysis of the device parameters, we propose methods for improving the device performance, including VOC, the short-circuit current, and PCE. The carrier-collection length of the n-type SnS single crystals was estimated to be ∼200 nm based on the external quantum efficiency measurements. Therefore, this study demonstrates that the VOC of SnS solar cells can be improved by fabricating a junction with MoO3 thin films.

Funder

Japan Society for the Promotion of Science

Murata Science Foundation

Five-Star Alliance in NJRC Mater. and Dev.

LOEWE Program of the State of Hesse Through the FLAME Project

Publisher

AIP Publishing

Subject

General Engineering,General Materials Science

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