Choi Jun Young, Park In Pyo, Heo Soo Won
Nanomaterials and Nanotechnology Center, Electronic Convergence Division, Korea Institute of Ceramic Engineering and Technology (KICET), 101, Soho-ro, Jinju-si, Gyeongsangnam-do 52851, Korea.
ACS Appl Mater Interfaces. 2021 Nov 3;13(43):51289-51296. doi: 10.1021/acsami.1c17729. Epub 2021 Oct 25.
In this study, ultra-flexible organic photovoltaics (OPVs) with a new device structure are developed as a power source for ultra-flexible wearable devices with excellent biocompatibility. To fabricate ultra-flexible OPVs with excellent mechanical properties, we develop an ultra-flexible substrate with a bilayer structure based on polymers and transparent conducting oxides. An amorphous perfluorinated polymer (cyclic transparent optical polymer, CYTOP) is introduced as an ultra-flexible substrate by a solution process. An indium zinc tin oxide (IZTO) transparent electrode possessing an amorphous structure is fabricated via pulsed DC magnetron sputtering at room temperature using a target containing 80 atom % InO-10 atom % ZnO-10 atom % SnO. Ultra-flexible OPVs with a one-dimensional (1D) grating pattern are fabricated on the buffer layer and photoactive layer. These OPVs exhibit an increase of 12% in power conversion efficiency (PCE) (maximum PCE: 8.52%) compared to the reference, thereby minimizing reliance on the incident angle of light. In addition, even after 1000 compression/relaxation tests with a compression strain of 33%, the PCE of the ultra-flexible OPVs is maintained up to 94.8% of its initial value.
在本研究中,开发了一种具有新型器件结构的超柔性有机光伏电池(OPV),作为具有优异生物相容性的超柔性可穿戴设备的电源。为了制造具有优异机械性能的超柔性OPV,我们基于聚合物和透明导电氧化物开发了一种具有双层结构的超柔性基板。通过溶液法引入一种非晶全氟聚合物(环状透明光学聚合物,CYTOP)作为超柔性基板。使用含有80原子%InO - 10原子%ZnO - 10原子%SnO的靶材,通过室温下的脉冲直流磁控溅射制备具有非晶结构的铟锌锡氧化物(IZTO)透明电极。在缓冲层和光活性层上制备具有一维(1D)光栅图案的超柔性OPV。与参考样品相比,这些OPV的功率转换效率(PCE)提高了12%(最大PCE:8.52%),从而将对光入射角的依赖降至最低。此外,即使在进行了1000次压缩应变率为33%的压缩/松弛测试后,超柔性OPV的PCE仍保持在其初始值的94.8%。