Selective Spin Dewetting for Perovskite Solar Modules Fabricated on Engineered Au/ITO Substrates

Author:

Singh Son1ORCID,Abdur Rahim1ORCID,Sheikh Md. Abdul Kuddus1ORCID,Swain Bhabani Sankar1ORCID,Song Jindong2ORCID,Kim Jae-Hun1ORCID,Nam Ho-Seok1ORCID,Kim Sung-Hyon3,Lee Hyunseung4ORCID,Lee Jaegab1ORCID

Affiliation:

1. School of Advanced Materials Engineering, Kookmin University, Seoul 02707, Republic of Korea

2. Center for Opto-Electronic Materials and Devices, Korea Institute of Science and Technology (KIST), Seoul 02792, Republic of Korea

3. Department of Fashion Design, Kookmin University, Seoul 02707, Republic of Korea

4. Department of Fashion Industry, Incheon National University, Incheon 22012, Republic of Korea

Abstract

We introduce a novel method for fabricating perovskite solar modules using selective spin-coating on various Au/ITO patterned substrates. These patterns were engineered for two purposes: (1) to enhance selectivity of monolayers primarily self-assembling on the Au electrode, and (2) to enable seamless interconnection between cells through direct contact of the top electrode and the hydrophobic Au connection electrode. Utilizing SAMs-treated Au/ITO, we achieved sequential selective deposition of the electron transport layer (ETL) and the perovskite layer on the hydrophilic amino-terminated ITO, while the hole transport layer (HTL) was deposited on the hydrophobic CH3-terminated Au connection electrodes. Importantly, our approach had a negligible impact on the series resistance of the solar cells, as evidenced by the measured specific contact resistivity of the multilayers. A significant outcome was the production of a six-cell series-connected solar module with a notable average PCE of 8.32%, providing a viable alternative to the conventional laser scribing technique.

Funder

National Research Foundation of Korea

Ministry of Science and ICT

Publisher

MDPI AG

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