首页> 外文会议>Conference on Organic Photovoltaics IV; Aug 7-8, 2003; San Diego, California, USA >Fabrication of Photovoltaic Cell From Ruthenium Containing Polymer Using Layer By Layer Polyelectrolytes Adsorption Technique
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Fabrication of Photovoltaic Cell From Ruthenium Containing Polymer Using Layer By Layer Polyelectrolytes Adsorption Technique

机译:层状聚电解质吸附法从含钌聚合物制备光伏电池。

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Multilayer photovoltaic devices were fabricated by the sequence adsorption of different polyelectrolytes. A ruthenium terpyridine complex containing poly(p-phenylenevinylene) was used as the polycation layer. This polymer has been shown to exhibit large photo-sensitivity due to the presence of the ruthenium complex, which has relatively long-lived excited state. This polymer absorbs strongly in the visible region at ca. 480-550 nm and it can act as the electron transporter. Sulfonated polyaniline was used as the hole-transporting polyanion layer. The ITO/(polyanion/polycation)_n/Al devices were found to exhibit photovoltaic properties under the illumination of AM1 solar radiation. The short-circuit current I_(sc), open-circuit voltage V_(oc), and the fill factor FF were measured to be 14 μA/cm~2, 0.84 V and 0.16 respectively. It was found that the power conversion efficiencies of the devices were dependent on the device thickness. This simple layer-by-layer self-assembly method allowed us to control the devices thickness accurately.
机译:通过不同的聚电解质的顺序吸附来制造多层光伏器件。含有聚对苯撑亚乙烯基的钌联吡啶络合物用作聚阳离子层。由于钌络合物的存在,该聚合物表现出大的光敏性,钌络合物具有相对较长的激发态。该聚合物在约200nm的可见光区域强烈吸收。在480-550 nm之间,它可以充当电子传输体。磺化聚苯胺用作空穴传输聚阴离子层。发现ITO /(聚阴离子/聚阳离子)_n / Al器件在AM1太阳辐射的照射下表现出光伏性质。短路电流I_(sc),开路电压V_(oc)和填充系数FF分别为14μA/ cm〜2、0.84 V和0.16。发现器件的功率转换效率取决于器件的厚度。这种简单的逐层自组装方法使我们能够精确控制器件的厚度。

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