Department of Advanced Material Chemistry, Korea University, Sejong, 339-700, Republic of Korea.
Department of Carbon Materials/Chemistry Education, Chosun University, Gwangju, 501-759, Republic of Korea.
Chem Asian J. 2016 Feb 18;11(4):548-54. doi: 10.1002/asia.201501178. Epub 2015 Dec 10.
Efficient hole-transporting materials (HTMs), TAZ-[MeOTPA]2 and TAZ-[MeOTPATh]2 incorporating two electron-rich diphenylamino side arms, through direct linkage or thiophen bridges, respectively, on the C3- and C5-positions of a 4-phenyl-1,2,4-triazole core were synthesized. These synthetic HTMs with donor-acceptor type molecular structures exhibited effective intramolecular charge transfer for improving the hole-transporting properties. The structural modification of HTMs by thiophene bridging might increase intermolecular π-π stacking in the solid state and afford a better spectral response because of their increased π-conjugation length. Perovskite-based cells using TAZ-[MeOTPA]2 and TAZ-[MeOTPATh]2 as HTMs afforded high power conversion efficiencies of 10.9 % and 14.4 %, respectively, showing a photovoltaic performance comparable to that obtained using spiro-OMeTAD. These synthetically simple and inexpensive HTMs hold promise for replacing the more expensive spiro-OMeTAD in high-efficiency perovskite solar cells.
通过直接连接或噻吩桥,在 4-苯基-1,2,4-三唑核心的 C3-和 C5-位置上分别引入了两个富电子二苯基氨基侧臂的高效空穴传输材料(HTMs)TAZ-[MeOTPA]2 和 TAZ-[MeOTPATh]2。这些具有给体-受体型分子结构的合成 HTMs 通过分子内电荷转移,表现出有效的空穴传输性能。噻吩桥接对 HTMs 的结构修饰可能会增加固态中的分子间 π-π 堆积,并由于其增加的 π 共轭长度而提供更好的光谱响应。使用 TAZ-[MeOTPA]2 和 TAZ-[MeOTPATh]2 作为 HTMs 的钙钛矿基电池分别提供了 10.9%和 14.4%的高光功率转换效率,显示出与使用 spiro-OMeTAD 获得的光伏性能相当。这些合成简单且廉价的 HTMs 有望取代更昂贵的 spiro-OMeTAD,用于高效钙钛矿太阳能电池。