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Synergistic strategies for the preparation of highly efficient dye-sensitized solar cells on plastic substrates: combination of chemical and physical sintering

机译:在塑料基材上制备高效染料敏化太阳能电池的协同策略:化学和物理烧结的组合

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Preparation of well-interconnected TiO _(2) electrodes at low temperature is critical for the fabrication of highly efficient dye-sensitized solar cells (DSCs) on plastic substrates. Herein we explore a synergistic approach using a combination of chemical and physical sintering. We formulate a binder-free TiO _(2) paste based on “nanoglue” as the chemical sintering agent, and use it to construct a photoelectrode on plastic by low-temperature physical compression to further improve the connectivity of TiO _(2) films. We systematically investigated the factors affecting the photovoltaic performance and found the conditions to achieve electron diffusion lengths as long as 25 μm and charge collection efficiencies as high as 95%, as electrochemical impedance spectroscopy measurements indicate. We apply this approach to obtain a DSC deposited on plastic displaying 6.4% power conversion efficiency based on commercial P25 titania particles.
机译:在低温下的良好互连的TiO _(2)电极的制备对于在塑料基材上制造高效染料敏化太阳能电池(DSC)至关重要。在此,我们探讨了使用化学和物理烧结的组合的协同方法。基于“纳米光线”作为化学烧结剂,用粘合剂的TiO _(2)浆料配制,并通过低温物理压缩来使用它在塑料上构建光电极,以进一步提高TiO _(2)膜的连通性。我们系统地研究了影响光伏性能的因素,并发现实现电子扩散长度的条件,只要电化学阻抗光谱测量表明,即高达95%的电荷收集效率。我们应用这种方法来获得沉积在塑料的DSC,基于商业P25二氧化钛颗粒显示6.4%的功率转换效率。

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