Science. 1992 Nov 27;258(5087):1474-6. doi: 10.1126/science.258.5087.1474.
Evidence for photoinduced electron transfer from the excited state of a conducting polymer onto buckminsterfullerene, C(60), is reported. After photo-excitation of the conjugated polymer with light of energy greater than the pi-pi* gap, an electron transfer to the C(60) molecule is initiated. Photoinduced optical absorption studies demonstrate a different excitation spectrum for the composite as compared to the separate components, consistent with photo-excited charge transfer. A photoinduced electron spin resonance signal exhibits signatures of both the conducting polymer cation and the C(60) anion. Because the photoluminescence in the conducting polymer is quenched by interaction with C(60), the data imply that charge transfer from the excited state occurs on a picosecond time scale. The charge-separated state in composite films is metastable at low temperatures.
报告了从共轭聚合物的激发态到富勒烯 C(60)的光诱导电子转移的证据。用光的能量大于 π-π* 隙激发共轭聚合物后,电子被引发转移到 C(60)分子上。光致吸收研究表明,与单独的组分相比,复合材料具有不同的激发光谱,这与光激发的电荷转移一致。光诱导电子自旋共振信号显示出导电聚合物阳离子和 C(60)阴离子的特征。由于与 C(60)的相互作用,导电聚合物中的光致发光被猝灭,因此数据表明,电子从激发态转移发生在皮秒时间尺度上。在低温下,复合膜中的电荷分离态是亚稳态的。