摘要
以透明导电薄膜Mo O3/Au/Mo O3代替铟锡氧化物(ITO)作为有机太阳能电池(OSCs)的阳极,研究了一系列结构为Mo O3/Au/Mo O3的透明电极和Mo O3(y nm)/Au(x nm)/Mo O3(y nm)/Cu Pc(25 nm)/C60(40nm)/BCP(8 nm)/Al(100 nm)的有机太阳能电池。研究表明,Mo O3/Au/Mo O3电极的光电特性可通过改变各层薄膜厚度加以调控,在Mo O3薄膜厚度为40 nm、Au薄膜厚度为10 nm时性能最优,且以该薄膜为电极的有机太阳能电池器件的性能接近于电极为ITO的有机太阳能电池器件。
Transparent conductive film Mo O3/Au/Mo O3 was used as the anode of organic solar cells( OSCs) instead of indium tin oxide( ITO). A series of Mo O3/Au/Mo O3 transparent electrodes and OSCs with the structure of Mo O3( y nm)/Au( x nm)/Mo O3( y nm)/Cu Pc( 25 nm)/C60( 40 nm)/BCP( 8 nm)/Al( 100 nm) were fabricated. The results show that the photoelectric characteristics of Mo O3/Au/Mo O3 electrode can be controlled by changing the film thickness of each layer,the optimum performance of OSC is achieved when the thickness of Mo O3 film is 40 nm and the thickness of Au film is 10 nm. Besides,the performance of the OSC with Mo O3/Au/Mo O3 electrode is close to that of OSC with ITO electrode.
出处
《发光学报》
EI
CAS
CSCD
北大核心
2017年第10期1332-1337,共6页
Chinese Journal of Luminescence
基金
重庆市教委科学技术研究项目(KJ1400411
KJ1600439)
重庆邮电大学青年科学基金(A2013-39)资助项目~~
关键词
透明电极
有机太阳电池
光电性能
transparent electrode
organic solar cells
photoelectric performance