Department of Materials Science and Engineering, National Chiao Tung University, Hsinchu, Taiwan, ROC.
Macromol Rapid Commun. 2012 Apr 13;33(6-7):528-33. doi: 10.1002/marc.201100752. Epub 2012 Jan 9.
Two random (Zn(II)-based P1-P2) and two alternating (Ru(II)-based P3-P4) metallo-copolymers containing bis-terpyridyl ligands with various central donor (i.e., fluorene or carbazole) and acceptor (i.e., benzothiadiazole) moieties were synthesized. The effects of electron donor-acceptor interactions with metal (Zn(II) and Ru(II)) ions on their thermal, optical, and electrochemical properties were investigated. Because of the strong ICT transitions between donor and acceptor ligands in both Zn(II)- and Ru(II)-based metallo-coplymers and MLCT transitions in Ru(II)-based metallo-coplymers, the absorption spectra covered a broad range of 260-750 nm with the band gaps of 1.57-1.77 eV. In addition, the introduction of Ru(II)-based metallo-coplymer P4 mixed with PC(60)BM as an active layer of the BHJ solar cell device exhibited the highest PCE value up to 0.90%.
两种随机的(基于 Zn(II)的 P1-P2)和两种交替的(基于 Ru(II)的 P3-P4)金属聚合物,均含有双-三联吡啶配体,具有不同的中心供体(即芴或咔唑)和受体(即苯并噻二唑)部分。研究了电子供体-受体与金属(Zn(II)和 Ru(II))离子之间的相互作用对它们的热、光和电化学性能的影响。由于在基于 Zn(II)和 Ru(II)的金属聚合物中供体和受体配体之间存在强的 ICT 跃迁,以及在基于 Ru(II)的金属聚合物中 MLCT 跃迁,吸收光谱覆盖了 260-750nm 的宽范围,带隙为 1.57-1.77eV。此外,将基于 Ru(II)的金属聚合物 P4 与 PC(60)BM 混合作为 BHJ 太阳能电池器件的活性层,表现出高达 0.90%的最高 PCE 值。