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Immobilization of photosystem I or II complexes on electrodes for preparation of photoenergyconversion devices

机译:将光系统I或II复合物固定在电极上以制备光能转换装置

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摘要

Photosystems, PSI and PSII isolated from Thermosynechococcus elongatus were successfully immobilized on a TiO_2 nanostructured film for use in dyesensitized biosolar cells (DSBCs). The photosystem complexes were also immobilized on an ITO electrode modified with 3-aminopropyltriethoxysilane by utilizing the interactions between the electrode and the surface of the PSI or PSII polypeptide. Illumination of the PSI and PSII complexes immobilized on the ITO electrode resulted in action spectra in the presence of methyl viologen, which corresponded to the absorption spectra of the complexes. Compared with the ITO electrode, PSI or PSII complexes assembled on the TiO_2 electrode had much higher energy-conversion efficiency in the presence of an iodide/triiodide redox system of an ionic-liquid-based electrolyte. This could have interesting applications in the development of DSBCs.
机译:从长形嗜热球菌分离的光系统,PSI和PSII已成功固定在TiO_2纳米结构薄膜上,用于染料敏化的生物太阳能电池(DSBC)。通过利用电极与PSI或PSII多肽表面之间的相互作用,将光系统复合物固定在用3-氨丙基三乙氧基硅烷改性的ITO电极上。固定在ITO电极上的PSI和PSII配合物的照明产生了在甲基紫精存在下的作用光谱,该光谱对应于配合物的吸收光谱。与ITO电极相比,组装在TiO_2电极上的PSI或PSII配合物在离子液基电解质的碘化物/三碘化物氧化还原体系存在下具有更高的能量转换效率。这在DSBC的开发中可能会有有趣的应用。

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