Lending Triarylphosphine Oxide to Phenanthroline: a Facile Approach to High-Performance Organic Small-Molecule Cathode Interfacial Material for Organic Photovoltaics utilizing Air-Stable Cathodes
Autor: | Wallace C. H. Choy, Wei Chen, Xinchen Li, Wan-Yi Tan, Shunmian Lu, Li Min, Xu-Hui Zhu, Hugh L. Zhu, Rui Wang, Gang Liu, Yong Cao, Feng Li, Qiming Peng, Junbiao Peng, Ping Chen |
---|---|
Rok vydání: | 2014 |
Předmět: |
Materials science
Organic solar cell Photoemission spectroscopy Phenanthroline Inorganic chemistry Energy conversion efficiency Oxide Condensed Matter Physics Cathode Electronic Optical and Magnetic Materials Active layer law.invention Biomaterials chemistry.chemical_compound chemistry Chemical engineering law Electrochemistry Work function |
Zdroj: | Advanced Functional Materials. 24:6540-6547 |
ISSN: | 1616-301X |
DOI: | 10.1002/adfm.201401685 |
Popis: | Cathode interfacial material (CIM) is critical to improving the power conversion efficiency (PCE) and long-term stability of an organic photovoltaic cell that utilizes a high work function cathode. In this contribution, a novel CIM is reported through an effective and yet simple combination of triarylphosphine oxide with a 1,10-phenanthrolinyl unit. The resulting CIM possesses easy synthesis and purification, a high T g of 116 °C and attractive electron-transport properties. The characterization of photovoltaic devices involving Ag or Al cathodes shows that this thermally deposited interlayer can considerably improve the PCE, due largely to a simultaneous increase in V oc and FF relative to the reference devices without a CIM. Notably, a PCE of 7.51% is obtained for the CIM/Ag device utilizing the active layer PTB7:PC71BM, which far exceeds that of the reference Ag device and compares well to that of the Ca/Al device. The PCE is further increased to 8.56% for the CIM/Al device (with J sc = 16.81 mA cm−2, V oc = 0.75 V, FF = 0.68). Ultraviolet photoemission spectroscopy studies reveal that this promising CIM can significantly lower the work function of the Ag metal as well as ITO and HOPG, and facilitate electron extraction in OPV devices. |
Databáze: | OpenAIRE |
Externí odkaz: |