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Development of stable current collectors for large area dye-sensitized solar cells

机译:用于大面积染料敏化太阳能电池的稳定集电器的开发

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The substrate sheet resistance effect in a large area dye-sensitized solar cell (DSC) device is still the main factor responsible for low energy conversion efficiencies. In this work, current collectors made of metal lines were applied by magnetron sputtering on a transparent conducting glass substrate. The introduction of these metal lines enabled a decrease in the sheet resistance from 7.26 Omega.square(-1) to 2.52 Omega.square(-1), by depositing an optimized 1.0 mu m tungsten thick layer on the top of 1.5 mu m thick molybdenum lines. These Mo/W lines withstanded long-term stability when in contact with iodide/triiodide redox couple. Large area dye-sensitized solar cells with 36 cm(2) of active area were assembled and the power conversion efficiency increased from 0.54% to 1.62% when ten metal lines were applied in both electrodes. As a final design, Mo/W lines were only applied onto the counter-electrode and protected with an indium-tin oxide layer; the resulting device showed a power conversion efficiency of 3.43%, compared with the reference efficiency of 2.38%. (C) 2017 Elsevier B.V. All rights reserved.
机译:大面积染料敏化太阳能电池(DSC)器件中的基板薄层电阻效应仍然是导致低能量转换效率的主要因素。在这项工作中,由金属线制成的集电器通过磁控溅射法施加在透明的导电玻璃基板上。通过在1.5微米厚的顶部沉积优化的1.0微米厚的钨层,这些金属线的引入使薄层电阻从7.26Ω·平方(-1)降低到2.52Ω·平方(-1)。钼线。这些Mo / W线在与碘化物/三碘化物氧化还原对接触时可承受长期稳定性。组装了有效面积为36 cm(2)的大面积染料敏化太阳能电池,并且在两个电极中都应用了十条金属线时,功率转换效率从0.54%增加到1.62%。作为最终设计,仅将Mo / W线施加到对电极上,并用铟锡氧化物层进行保护;所得器件的功率转换效率为3.43%,而参考效率为2.38%。 (C)2017 Elsevier B.V.保留所有权利。

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