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A novel self-assembly with zinc porphyrin coordination polymer for enhanced photocurrent conversion in supramolecular solar cells

机译:一种新型的具有卟啉锌配位聚合物的自组装体,可增强超分子太阳能电池中的光电流转化

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摘要

In this work, a novel acetohydrazide zinc porphyrin-based coordination polymer (CP)-isonicotinic acid self-assembly by metal-ligand axial coordination to modify the nano-structured TiO_2 electrode surface has been investigated in photoelectrochemical device. Compared to the assembly based on corresponding zinc porphyrin combined with isonicotinic acid by metal-ligand axial coordination, CP-isonicotinic acid assembly exhibits a significantly enhanced photoelectronic behavior. In addition, a series of different organic acid ligands were prepared to probe the impact of their structures on the photoelectronic performances of their corresponding assemblies-sensitized cells. This study affords a novel type of self-assembly to functionalize the nanostructured TiO_2 electrode surface in supramolecular solar cells.
机译:在这项工作中,研究了一种新型的乙酰肼基卟啉锌配位聚合物(CP)-异烟酸通过金属配体轴向配位自组装修饰纳米结构TiO_2电极表面的光电化学装置。与通过金属-配体轴向配位结合相应的卟啉锌和异烟酸的组合相比,CP-异烟酸的组合显示出显着增强的光电性能。此外,准备了一系列不同的有机酸配体,以探讨其结构对其相应的装配敏化电池的光电性能的影响。这项研究提供了一种新型的自组装,以功能化超分子太阳能电池中的纳米结构的TiO_2电极表面。

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