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Organic solar cells. Supramolecular composites of porphyrins and fullerenes organized by polypeptide structures as light harvesters

机译:有机太阳能电池。卟啉和富勒烯的超分子复合物由多肽结构作为光收集器组织

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摘要

We have constructed supramolecular solar cells composed of a series of porphyrin-peptide oligomers [porphyrin functionalized α-polypeptides, P(H2P)_n or P(ZnP)_n in- 1, 2, 4, 8, 16)], and fullerenes assembled on a nanostructured SnO2 electrode using an electrophoretic deposition method. Remarkable enhancement in the photoelectrochemical performance as well as the broader photoresponse in the visible and near-infrared regions is seen with increasing the number of porphyrin units in α-polypeptide structures. Formation of supramolecular clusters of porphyrins and fullerenes prepared in acetonitrile-toluene = 3:1 has been confirmed by transmission electron micrographs (TEM) and the absorption spectra. The highly colored composite clusters of porphyrin-peptide oligomers and fullerenes have been assembled as three-dimensional arrays onto nanostructured SnO2 films using an electrophoretic deposition method. A high power conversion efficiency (η) of ~ 1.6% and the maximum incident photon-to-photocurrent efficiency (IPCE = 56%) were attained using composite clusters of free base and zinc porphyrin-peptide hexadecamers [P(H2P)_(16) and P(ZnP)_(16)] with fullerenes, respectively. Femtosecond transient absorption and fluorescence measurements of porphyrin-fullerene composite films confirm improved electron-transfer properties with increasing number of porphyrins in a polypeptide unit. The formation of molecular assemblies between porphyrins and fullerenes with a polypeptide structure controls the electron-transfer efficiency in the supramolecular complexes, meeting the criteria required for efficient light energy conversion.
机译:我们构建了由一系列卟啉-肽低聚物[卟啉官能化的α-多肽,P(H2P)_n或P(ZnP)_n in-1、2、4、8、16)组成的超分子太阳能电池,并组装了富勒烯使用电泳沉积方法在纳米结构的SnO2电极上进行沉积。随着α-多肽结构中卟啉单元数量的增加,可见光电化学性能的显着增强以及在可见光和近红外区域中更宽的光响应。乙腈-甲苯= 3:1中制备的卟啉和富勒烯的超分子簇的形成已通过透射电子显微照片(TEM)和吸收光谱确认。卟啉-肽低聚物和富勒烯的高度着色的复合簇已使用电泳沉积方法作为三维阵列组装到纳米结构的SnO2薄膜上。使用游离碱和卟啉锌肽六聚体[P(H2P)_(16)的复合簇,可获得约1.6%的高功率转换效率(η)和最大入射光子至光电流效率(IPCE = 56%)。 )和P(ZnP)_(16)]分别带有富勒烯。飞秒富勒烯复合膜的飞秒瞬态吸收和荧光测量结果证实,随着多肽单元中卟啉数量的增加,电子传递性能得到改善。卟啉和富勒烯之间具有多肽结构的分子组装体的形成,控制了超分子复合物中的电子转移效率,满足了有效的光能转换所需的标准。

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