Weidong XuCongfei YanZhipeng KanYang WangWen‐Yong LaiWei Huang
A novel fulleropyrrolidine derivative, named FPNOH, was designed, synthesized, and utilized as an efficient electron-collecting (EC) layer for inverted organic solar cells (i-OSCs). The grafted diethanolamino-polar moieties can not only trigger its function as an EC interlayer, but also induce orthogonal solubility that guarantees subsequent multilayer processing without interfacial mixing. A higher power conversion efficiency (PCE) value of 8.34% was achieved for i-OSC devices with ITO/FPNOH EC electrode, compared to that of the sol-gel ZnO based reference devices with an optimized PCE value of 7.92%. High efficiency exceeding 7.7% was still achieved even for the devices with a relatively thick FPNOH film (16.9 nm). It is worthwhile to mention that this kind of material exhibits less thickness dependent performance, in contrast to widely utilized p-type conjugated polyelectrolytes (CPEs) as well as the nonconjugated polyelectrolytes (NCPEs). Further investigation on illuminating intensity dependent parameters revealed the role of FPNOH in reducing interfacial trap-induced recombination at the ITO/active layer interface.
Weidong Xu (80949)Congfei Yan (2808079)Zhipeng Kan (1610002)Yang Wang (5921)Wen-Yong Lai (807243)Wei Huang (36889)
Yanting GongJiandong ZhangBin DuMengyi WangWen‐Yong LaiWei Huang
Jegadesan SubbiahChad M. AmbIrfan IrfanYongli GaoJohn R. ReynoldsFranky So
Jiyun SongJaehoon LimDonggu LeeM. ThambiduraiJun Young KimMyeongjin ParkHyung‐Jun SongSeonghoon LeeKookheon CharChanghee Lee