Hafnium metallocene compounds used as cathode interfacial layers for enhanced electron transfer in organic solar cells
Author(s) -
Keunhee Park,
Seungsik Oh,
Donggeun Jung,
Heeyeop Chae,
Hyoungsub Kim,
JinHyo Boo
Publication year - 2012
Publication title -
nanoscale research letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.87
H-Index - 107
eISSN - 1931-7573
pISSN - 1556-276X
DOI - 10.1186/1556-276x-7-74
Subject(s) - cathode , materials science , metallocene , layer (electronics) , hafnium , organic solar cell , styrene , chemical engineering , cyclopentadienyl complex , inorganic chemistry , composite material , copolymer , organic chemistry , zirconium , catalysis , chemistry , metallurgy , polymer , polymerization , engineering
We have used hafnium metallocene compounds as cathode interfacial layers for organic solar cells [OSCs]. A metallocene compound consists of a transition metal and two cyclopentadienyl ligands coordinated in a sandwich structure. For the fabrication of the OSCs, poly[3,4-ethylenedioxythiophene]:poly(styrene sulfonate), poly(3-hexylthiophene-2,5-diyl) + [ 6 , 6 ]-phenyl C 61 butyric acid methyl ester, bis-(ethylcyclopentadienyl)hafnium(IV) dichloride, and aluminum were deposited as a hole transport layer, an active layer, a cathode interfacial layer, and a cathode, respectively. The hafnium metallocene compound cathode interfacial layer improved the performance of OSCs compared to that of OSCs without the interfacial layer. The current density-voltage characteristics of OSCs with an interfacial layer thickness of 0.7 nm and of those without an interfacial layer showed power conversion efficiency [PCE] values of 2.96% and 2.34%, respectively, under an illumination condition of 100 mW/cm 2 (AM 1.5). It is thought that a cathode interfacial layer of an appropriate thickness enhances the electron transfer between the active layer and the cathode, and thus increases the PCE of the OSCs.
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