PUBLICATIONS

Advanced Devices for Energy Conversion

Journals

Advanced Materials
년도 2022
학술지명 Advanced Materials
논문명 Material Design and Device Fabrication Strategies for Stretchable Organic Solar Cells
게재권/집 34/31
수록페이지 2201623
저자명 Jin Su Park†, Geon-U Kim†, Seungjin Lee†, Jin-Woo Lee, Sheng Li, Jung-Yong Lee*, and Bumjoon J. Kim*
Link 관련링크 https://doi.org/10.1002/adma.202201623 3623회 연결

Abstract 


Recent advances in the power conversion efficiency (PCE) of organic solar cells (OSCs) have greatly enhanced their commercial viability. Considering the technical standards (e.g., mechanical robustness) required for wearable electronics, which are promising application platforms for OSCs, the development of fully stretchable OSCs (f-SOSCs) should be accelerated. Here, a comprehensive overview of f-SOSCs, which are aimed to reliably operate under various forms of mechanical stress, including bending and multidirectional stretching, is provided. First, the mechanical requirements of f-SOSCs, in terms of tensile and cohesion/adhesion properties, are summarized along with the experimental methods to evaluate those properties. Second, essential studies to make each layer of f-SOSCs stretchable and efficient are discussed, emphasizing strategies to simultaneously enhance the photovoltaic and mechanical properties of the active layer, ranging from material design to fabrication control. Key improvements to the other components/layers (i.e., substrate, electrodes, and interlayers) are also covered. Lastly, considering that f-SOSC research is in its infancy, the current challenges and future prospects are explored.