Issue 17, 2015

An alcohol soluble amino-functionalized organoplatinum(ii) complex as the cathode interlayer for highly efficient polymer solar cells

Abstract

A small-molecule amino-functionalized organoplatinum(II) complex Pt–N has been developed. The unique properties of Pt–N, including a well-defined chemical structure, an excellent solubility in environmentally friendly polar solvents and good electron extraction to high work-function metals, make it a promising candidate for cathode interfacial modification of solution processed multilayer polymer solar cells (PSCs). The resultant PSCs with an ITO/PEDOT:PSS/PTB7:PC71BM/interlayer/Al device configuration exhibited significantly improved efficiencies from 3.62% for an unmodified device to 8.89% by using a Pt–N cathode interlayer, benefiting from the dramatic enhancement in the open circuit voltage (0.53 V for bare Al PSCs to 0.75 V for Pt–N/Al PSCs), the fill factor (43.58% for bare Al PSC to 72.49% for Pt–N/Al PSC), and a slight increase in short-circuit current density. These results indicate that Pt–N is a new promising candidate as the cathode interlayer for highly efficient PSCs.

Graphical abstract: An alcohol soluble amino-functionalized organoplatinum(ii) complex as the cathode interlayer for highly efficient polymer solar cells

Supplementary files

Article information

Article type
Paper
Submitted
14 Feb 2015
Accepted
21 Mar 2015
First published
24 Mar 2015

J. Mater. Chem. C, 2015,3, 4372-4379

An alcohol soluble amino-functionalized organoplatinum(II) complex as the cathode interlayer for highly efficient polymer solar cells

S. Liu, G. Zhang, J. Lu, J. Jia, W. Li, F. Huang and Y. Cao, J. Mater. Chem. C, 2015, 3, 4372 DOI: 10.1039/C5TC00452G

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