[1] Y Y KIM, T Y YANG, R SUHONEN et al. Roll-to-roll gravure-printed flexible perovskite solar cells using eco-friendly antisolvent bathing with wide processing window. Nature Communications, 11, 1-11(2020).
[2] C F HUANG, R T CHIANG, Y T CHENG. A combined spin coating and lift-off process (CSLOP) to realize thick silver microstructures with a high aspect ratio for IoT applications, 1122-1125(2021).
[3] Y XIA, L E AGUIRRE, X XU et al. All-polymer high-performance photodetector through lamination. Advanced Electronic Materials, 6, 1901017(2020).
[4] G CAO, F WANG, M PENG et al. Multicolor broadband and fast photodetector based on InGaAs-insulator-graphene hybrid heterostructure. Advanced Electronic Materials, 6, 1901007(2020).
[5] Zhiming ZHONG, Kang LI, Jiaxin ZHANG et al. High-performance all-polymer photodetectors via thick photoactive layer strategy. ACS Applied Materials & Interfaces, 11, 14208-14214(2019).
[6] S Y KIM, S J CHO, S E BYEON et al. Self-assembled monolayers as interface engineering nanomaterials in perovskite solar cells. Advanced Energy Materials, 10, 2002606(2020).
[7] Linlin SHI, Jingcheng SONG, Ye ZHANG et al. High performance flexible organic photo-multiplication photodetector based on ultra-thin silver film transparent electrode. Nanotechnology, 31, 214001(2020).
[8] Tingting YAN, Wei SONG, Jiaming HUANG et al. 16.67% rigid and 14.06% flexible organic solar cells enabled by ternary heterojunction strategy. Advanced Materials, 31, 1902210(2019).
[9] Y WANG, W XU, J YI et al. Improving the exciton dissociation of polymer/fullerene interfaces with a minimal loading amount of energy cascading molecular dopant. Journal of Materials Chemistry A, 6, 15977-15984(2018).
[10] Jian WANG, Zijin ZHAO, Kaixuan YANG et al. A critical review on photomultiplication type organic photodetectors. Acta Polymerica Sinica, 53, 331-353(2022).
[11] Hanyu WANG, Yifan ZHENG, Ruiheng QIN et al. Highly sensitive panchromatic ternary polymer photodetectors enabled by Förster resonance energy transfer and post solvent treatment. Journal of Physics D: Applied Physics, 51, 104002(2018).
[12] Wei LI, Yalun XU, Xianyi MENG et al. Visible to near‐infrared photodetection based on ternary organic heterojunctions. Advanced Functional Materials, 29, 1808948(2019).
[13] S Y WENG, M ZHAO, D Y JIANG. Organic ternary bulk heterojunction broadband photodetectors based on nonfullerene acceptors with a spectral response range from 200 to 1050 nm. Journal of Physical Chemistry C, 125, 20676-20685(2021).
[14] H GU, L YAN, S SAXENA et al. Revealing the interfacial photoreduction of MoO3 with P3HT from the molecular weight-dependent “Burn-in” degradation of P3HT:PC61BM solar cells. ACS Applied Energy Materials, 3, 9714-9723(2020).
[15] K D KADAM, H KIM, S REHMAN et al. Compositional dynamics of the electron transport layer (ZnO:PEIE) in P3HT:PC61BM organic solar cells. Materials Science in Semiconductor Processing, 136, 106118(2021).
[16] A WADSWORTH, Z HAMID, J KOSCO et al. The bulk heterojunction in organic photovoltaic, photodetector, and photocatalytic applications. Advanced Materials, 32, 2001763(2020).
[17] G FORTI, A NITTI, P OSW et al. Recent advances in non-fullerene acceptors of the IDIC/ITIC families for bulk-heterojunction organic solar cells. International Journal of Molecular Sciences, 21, 8085(2020).
[18] Qingyuan LI, Yunlong GUO, Yunqi LIU. Exploration of near-infrared organic photodetectors. Chemistry of Materials, 31, 6359-6379(2019).
[19] Baobing FAN, Wenkai ZHONG, Xiaofang JIANG et al. Improved performance of ternary polymer solar cells based on a nonfullerene electron cascade acceptor. Advanced Energy Materials, 7, 1602127(2017).
[20] G ZHANG, G YANG, H YAN et al. Efficient non-fullerene polymer solar cells enabled by a novel wide bandgap small molecular acceptor. Advanced Materials, 29, 1606054(2017).
[21] Q FAN, W SU, X GUO et al. A 1,1′-vinylene-fused indacenodithiophene-based low bandgap polymer for efficient polymer solar cells. Journal of Materials Chemistry A, 5, 5106-5114(2017).
[22] A RIMINUCCI, P GRAZIOSI, M CALBUCCI et al. Low intrinsic carrier density LSMO/Alq3/AlOx/Co organic spintronic devices. Applied Physics Letters, 112, 142401(2018).
[23] Y XIE, F YANG, Y LI et al. Morphology control enables efficient ternary organic solar cells. Advanced Materials, 30, 1803045(2018).
[24] G ZUO, X LIU, M FAHLMAN et al. Morphology determines conductivity and Seebeck coefficient in conjugated polymer blends. ACS Applied Materials & Interfaces, 10, 9638-9644(2018).
[25] H WANG, ZHENG , R QIN et al. Highly sensitive panchromatic ternary polymer photodetectors enabled by Förster resonance energy transfer and post solvent treatment. Journal of Physics D, 51, 104002(2018).