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用于太阳能电池应用的聚吡咯/ZnCoO 纳米杂化体系的制备。

Fabrication of polypyrrole/ZnCoO nanohybrid systems for solar cell applications.

机构信息

Advanced Photovoltaics Centre, National Institute for Materials Science, Tsukuba, 305-0047, Japan.

出版信息

Dalton Trans. 2010 Sep 21;39(35):8325-30. doi: 10.1039/c0dt00167h. Epub 2010 Aug 10.

DOI:10.1039/c0dt00167h
PMID:20697647
Abstract

Hybrid solar cells employing conjugated polymers have revolutionized the photovoltaic industry by offering the prospect for large-scale energy conversion applications through cost-effective fabrication techniques. In this regard, we have demonstrated an experimental approach to fabricate polypyrrole/ZnCoO nanorod hybrid systems, using hydrothermal and electropolymerization techniques. The structural property studies on the hydrothermally synthesized Co-doped ZnO nanocrystallites revealed them to be phase pure with rod-like morphology. Considering the significant enhancement in their absorbance values over the visible spectral range (possibility for extended photon absorption), ZnCoO (Zn(0.95)Co(0.05)O) nanorods were deposited on transparent conducting (FTO) substrates through dip-coating methodology, for the fabrication of working electrodes. Electropolymerization of the pyrrole monomers was then carried out on the fabricated electrodes through cyclic voltammetry. The formation of polymer material was verified using FT-IR spectroscopy. The morphological evolution of polypyrrole deposits and their distribution on the working electrodes were substantially studied using atomic force microscopy and scanning electron microscopy. The flat band potential for the hybrid systems assimilated from the Mott-Schottky plots was observed to shift towards negative direction compared with ZnCoO, presumably due to the presence of the polymer composites, which gives rise to a more negative potential.

摘要

采用共轭聚合物的混合太阳能电池通过提供通过具有成本效益的制造技术的大规模能量转换应用的前景,彻底改变了光伏产业。在这方面,我们已经展示了一种使用水热和电聚合技术制造聚吡咯/ZnCoO 纳米棒混合系统的实验方法。对水热合成的 Co 掺杂 ZnO 纳米晶的结构性能研究表明,它们具有纯相和棒状形态。考虑到它们在可见光谱范围内(可能进行扩展光子吸收)的吸收值显著增强,ZnCoO(Zn(0.95)Co(0.05)O)纳米棒通过浸涂法沉积在透明导电(FTO)基底上,用于制造工作电极。然后通过循环伏安法在制备的电极上进行吡咯单体的电聚合。使用傅里叶变换红外光谱法验证了聚合物材料的形成。使用原子力显微镜和扫描电子显微镜对聚吡咯沉积物的形态演变及其在工作电极上的分布进行了深入研究。从 Mott-Schottky 图得出的混合系统的平带电势观察到与 ZnCoO 相比向负方向移动,这可能是由于聚合物复合材料的存在,这导致更负的电势。

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