Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/103598
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Title: Intrinsically stretchable, semi-transparent organic photovoltaics with high efficiency and mechanical robustness via a full-solution process
Authors: Huang, J 
Lu, Z 
He, J
Hu, H
Liang, Q 
Liu, K 
Ren, Z 
Zhang, Y 
Yu, H
Zheng, Z 
Li, G 
Issue Date: 1-Mar-2023
Source: Energy and environmental science, 1 Mar. 2023, v. 16, no. 3, p. 1251-1263
Abstract: Intrinsically stretchable organic photovoltaics (is-OPVs) with high efficiency and transparency are a great challenge for wearable applications. Herein, we report a full-solution-processed device framework for semi-transparent is-OPVs. A ferroconcrete-like AZO@silver nanowire ((AgNWs)@AZO; AAA) composite forms the back stretchable transparent electrode (STE), which not only offers a 3D long-range pathway for efficient charge transport and collection but also reinforces interfacial stability. The OPV based on AAA exhibits a power conversion efficiency (PCE) of 12.83% with an average visible transmittance of 26.7%. Further, by employing thermoplastic polyurethane-embedded AgNWs as the front STE, the full-solution-processed semi-transparent is-OPV achieves a record PCE of 10.90%. The is-OPV also exhibits excellent mechanical robustness and retains 76.5% of initial PCE after 500 cycles of 10% stretch-release. This work sets a foundation for constructing a semi-transparent is-OPV via a full-solution process for wearable applications and skin-like electronics.
Publisher: Royal Society of Chemistry
Journal: Energy and environmental science 
ISSN: 1754-5692
EISSN: 1754-5706
DOI: 10.1039/D2EE03096A
Rights: This journal is © The Royal Society of Chemistry 2023
The following publication Huang, J., Lu, Z., He, J., Hu, H., Liang, Q., Liu, K., Ren, Z., Zhang, Y., Yu, H., Zheng, Z., & Li, G. (2023). Intrinsically stretchable, semi-transparent organic photovoltaics with high efficiency and mechanical robustness via a full-solution process [10.1039/D2EE03096A]. Energy & Environmental Science, 16(3), 1251-1263 is available at https://dx.doi.org/10.1039/D2EE03096A.
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