Tavakoli Mohammad Mahdi, Dastjerdi Hadi Tavakoli, Zhao Jiayuan, Shulenberger Katherine E, Carbonera Chiara, Po Riccardo, Cominetti Alessandra, Bianchi Gabriele, Klein Nathan D, Bawendi Moungi G, Gradecak Silvija, Kong Jing
Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Small. 2019 Jun;15(25):e1900508. doi: 10.1002/smll.201900508. Epub 2019 May 7.
Low carrier mobility and lifetime in semiconductor polymers are some of the main challenges facing the field of organic photovoltaics (OPV) in the quest for efficient devices with high current density. Finding novel strategies such as device structure engineering is a key pathway toward addressing this issue. In this work, the light absorption and carrier collection of OPV devices are improved by employment of ZnO nanowire (NW) arrays with an optimum NW length (50 nm) and antireflection (AR) film with nanocone structure. The optical characterization results show that ZnO NW increases the transmittance of the electron transporting layer as well as the absorption of the polymer blend. Moreover, the as-deposited polymer blend on the ZnO NW array shows better charge transfer as compared to the planar sample. By employing PC70BM:PV2000 as a promising air-stable active-layer, power conversion efficiencies of 9.8% and 10.1% are achieved for NW devices without and with an AR film, indicating 22.5% and 26.2% enhancement in PCE as compared to that of planar device. Moreover, it is shown that the AR film enhances the water-repellent ability of the OPV device.
半导体聚合物中载流子迁移率低和寿命短是有机光伏(OPV)领域在追求具有高电流密度的高效器件时面临的一些主要挑战。寻找诸如器件结构工程等新策略是解决这一问题的关键途径。在这项工作中,通过使用具有最佳纳米线长度(50纳米)的氧化锌纳米线(NW)阵列和具有纳米锥结构的抗反射(AR)膜,提高了OPV器件的光吸收和载流子收集能力。光学表征结果表明,氧化锌纳米线提高了电子传输层的透过率以及聚合物共混物的吸收率。此外,与平面样品相比,沉积在氧化锌纳米线阵列上的聚合物共混物表现出更好的电荷转移。通过使用PC70BM:PV2000作为一种有前景的空气稳定活性层,不含AR膜和含AR膜的NW器件的功率转换效率分别达到9.8%和10.1%,与平面器件相比,光电转换效率提高了22.5%和26.2%。此外,结果表明AR膜增强了OPV器件的防水能力。