Dongcheng ChenHu ZhouPing CaiShi Chung SunHua YeShi‐Jian SuYong Cao
A triazine- and pyridinium-containing water-soluble material of 1,1′,1″-(4,4′,4″-(1,3,5-triazine-2,4,6-triyl)tris(benzene-4,1-diyl))tris(methylene)tripyridinium bromide (TzPyBr) was developed as an organic electron-selective layer in solution-processed inverted organic solar cells due to its strong anti-erosion capacity against non-polar organic solvents commonly used for the active layer. Ohmic-like contact with the adjacent active materials like fullerene derivatives is speculated to be formed, as confirmed by the work-function measurements with scanning Kelvin probe and ultraviolet photoelectron spectroscopy techniques. Besides, considering the deep highest occupied molecular orbital energy level of TzPyBr, excellent hole-blocking property of the electron-selective layer is also anticipated. The inverted organic photovoltaic devices based on the TzPyBr/ITO (indium tin oxide) bilayer cathode exhibit dramatically enhanced performance compared to the control devices with bare ITO as the cathode and even higher efficiency than the conventional type devices with ITO and Al as the electrodes.
Eng Liang LimChi Chin YapMohammad Hafizuddin Hj JumaliMohd Asri Mat TeridiChin Hoong Teh
M. ThambiduraiShini FooJun Young KimChanghee LeeCuong Dang
Jung Suk LeeMyoung JooYu Jung ParkJin Young KimJung Hwa SeoBright Walker
Jen Chun WangCheng-Yueh LuJui-Lin HsuMing-Kun LeeYun-Ru HongTsong‐Pyng PerngSheng-Fu HorngHsin‐Fei Meng
Walia Binte TariqueMd Habibur RahamanShahriyar Safat DiptaAshraful Hossain HowladerAshraf Uddin