Lim Jihyun, Kim Na Yeong, Jang Woongsik, An Un Su, Kyaw Aung Ko Ko, Kim Yun-Hi, Wang Dong Hwan
School of Integrative Engineering, Chung-Ang University, 84 Heukseok-Ro, Dongjak-gu, Seoul, 156-756, Republic of Korea.
Department of Chemistry and RINS, Gyeongsang National University, Jin-ju, 660-701, Republic of Korea.
Nano Converg. 2020 Mar 10;7(1):9. doi: 10.1186/s40580-020-0219-9.
An electron-rich fused indoloindole-based poly(indoloindole-selenophene vinylene selenophene) was synthesized and characterized. Soxhlet can be obtained by continuously purifying the product with a specific solvent and obtaining a pure polymer with a high concentration. Molecular weight is affected by the vapor pressure of marginal solvent, and the polymer was fractionated using tetrahydrofuran, chloroform, and chlorobenzene. Solubility is closely related to the morphology of bulk heterojunction and device parameters. In the solution process of fabricating the organic solar cell, securement of solubility has a great effect on the performance of the device, because morphology and orientation of a photo-active layer which significantly affect charge transport in the device. Since tetrahydrofuran (THF) Soxhlet solvents have high vapor pressure and appropriate solubility parameters, THF induced the best solubility of P-IDI-SVS materials for organic solvents. And through additive optimization, the performance of the device based on P-IDI-SVS from THF-Soxhlet extraction was enhanced. This is expected to be a meaningful study because the effect on solubility of Soxhlet solvent suggests factors to be considered in the solution process in organic solar cell research. In addition, surface modified bulk heterojunction was observed using atomic force microscopy, photoluminescence, time-correlated single photon counting and Raman spectroscopy analysis.
合成并表征了一种富电子的稠合吲哚并吲哚基聚(吲哚并吲哚-硒吩基亚乙烯基硒吩)。通过用特定溶剂连续纯化产物并获得高浓度的纯聚合物,可以得到索氏提取物。分子量受边缘溶剂蒸气压的影响,使用四氢呋喃、氯仿和氯苯对聚合物进行分级分离。溶解度与本体异质结的形态和器件参数密切相关。在制备有机太阳能电池的溶液过程中,确保溶解度对器件性能有很大影响,因为光活性层的形态和取向会显著影响器件中的电荷传输。由于四氢呋喃(THF)索氏溶剂具有高蒸气压和合适的溶解度参数,THF对P-IDI-SVS材料在有机溶剂中的溶解度诱导效果最佳。并且通过添加剂优化,基于THF-索氏提取的P-IDI-SVS器件的性能得到了提高。这有望成为一项有意义的研究,因为索氏溶剂对溶解度的影响表明了有机太阳能电池研究中溶液过程中需要考虑的因素。此外,使用原子力显微镜、光致发光、时间相关单光子计数和拉曼光谱分析观察了表面改性的本体异质结。