N‐Type Small Molecule Electron Transport Layers with Excellent Surface Energy and Moisture Resistance Siloxane for Non‐Fullerene Organic Solar Cells

Author:

Li Yubing1,Zhou Dan1ORCID,Han Liangjing1,Quan Jianwei1,Wang Fang1,Yang Xufang1,Hu Lin2,Wang Jianru1,Xu Haitao1,Chen Lie3ORCID

Affiliation:

1. Key Laboratory of Jiangxi Province for Persistent Pollutants Control and Resources Recycle Nanchang Hangkong University 696 Fenghe South Avenue Nanchang 330063 China

2. China‐Australia Institute for Advanced Materials and Manufacturing (IAMM) Jiaxing University Jiaxing 314001 China

3. Institute of Polymers and Energy Chemistry (IPEC) Nanchang University 999 Xuefu Avenue Nanchang 330031 China

Abstract

AbstractElectron transport layers (ETLs) generally contain polar groups for enhancing performance and reducing the work function. Nevertheless, the polar group with high surface energy may cause inferior interfacial compatibility, which challenges the ETLs to balance stability and performance. Here, two conjugated small molecules of ETLs with low surface energy siloxane, namely PDI‐Si and PDIN‐Si, are synthesized. The siloxane with low surface energy not only enhances the interfacial compatibility between ETLs and active layers but also improves the moisture‐proof stability of the device. Impressively, the amine‐functionalized PDIN‐Si can simultaneously exhibit conspicuous n‐type self‐doping properties and outstanding moisture‐proof stability. The optimization of interfacial contact and morphology enables the PM6:Y6‐based OSC with PDIN‐Si to achieve a power conversion efficiency (PCE) of 15.87%, which is slightly superior to that of classical ETL PDINO devices (15.27%), and when the PDIN‐Si film thickness reaches 28 nm, the PCE remains at 13.19% (≈83%), which indicates that PDIN‐Si has satisfactory thickness insensitivity to facilitate roll‐to‐roll processing. Excitingly, after 120 h of storage in an environment with humidity above 45%, the unencapsulated device with PDIN‐Si as ETL remains at 75% of the initial PCE value, while the device with PDINO as ETL is only 50%.

Funder

National Natural Science Foundation of China

Science Fund for Distinguished Young Scholars of Jiangxi Province

Double Thousand Plan of Jiangxi Province

Major Discipline Academic and Technical Leaders Training Program of Jiangxi Province

Natural Science Foundation of Jiangxi Province

Natural Science Foundation of Zhejiang Province

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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