首页> 外文会议>Proceedings of the Spring E-MRS Meeting, Symposium S >Anodic ordered titania nanostructures and in-situ electropolymerized poly-3-methylthiophene films for hybrid photovoltaic solar cells
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Anodic ordered titania nanostructures and in-situ electropolymerized poly-3-methylthiophene films for hybrid photovoltaic solar cells

机译:用于混合光伏太阳能电池的阳极有序二氧化钛纳米结构和原位电聚合的聚-3-甲基噻吩薄膜

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In the field of hybrid photovoltaic cell technology, the present work aims studying titanium dioxide layers with ordered nanostructure and poly-3-methylthiophene (P3MT) films in-situ electropolymerized onto them. Nanotube arrays were synthesized by anodization technique using a wide range of process conditions, and the dimensions and morphology of the obtained nanotubes were thoroughly analyzed. This study allowed tailoring the nanotube dimensions as requested by the final application. In this case, arrays with low thickness and large pore diameter, obtained in the acidic water based electrolyte, were selected to carry out further electropolymerization onto them. The nanotube pore diameter was identified as the dominant parameter influencing the P3MT layer thickness. The P3MT layers with the lowest thickness were obtained onto the less porous morphologies with low nanopore diameter values.
机译:在混合光伏电池技术领域中,本作作品旨在将二氧化钛层与有序纳米结构和聚-3-甲基噻吩(P3MT)薄膜的原位电解在它们上。通过使用各种工艺条件通过阳极化技术合成纳米管阵列,彻底分析了所得纳米管的尺寸和形态。本研究允许根据最终应用要求定制纳米管尺寸。在这种情况下,选择在酸性水基电解质中获得的低厚度和大的孔径的阵列以进行进一步的电聚合。纳米管孔径被鉴定为影响P3MT层厚度的主要参数。具有最低厚度的P3MT层在具有低纳米孔直径值的较少多孔形态上。

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