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Integration of biological photonic crystals in dye-sensitized solar cells for enhanced photocurrent generation

机译:将生物光子晶体集成到染料敏化太阳能电池中以增强光电流产生

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Dye-sensitized solar cells (DSSCs) rely on a network of titanium dioxide nanoparticles for electron transport and must balance carrier generation and collection. Adding photonic structures may increase light capture without affecting carrier collection. Diatoms are single-celled algae that biologically fabricate silicon dioxide cell walls which resemble photonic crystal slabs. We present a simple fabrication strategy that allows for uniform and controlled placement of biosilica within DSSCs. Integration of biosilica reduces photoanode transmittance to less than 5% prior to dye sensitization at loading levels as low as 6 wt% biosilica. Increased biosilica loading (17 wt%) provides additional enhancements in photocurrent generation. Reflectance measurements suggest that the enhancement results from the combined effects of photonic resonance and Mie scattering. Overall efficiency of these devices is improved by 8% and 14%, respectively.
机译:染料敏化太阳能电池(DSSC)依靠二氧化钛纳米颗粒网络进行电子传输,必须平衡载流子的产生和收集。添加光子结构可以增加光捕获而不影响载流子收集。硅藻是单细胞藻类,可生物制造类似于光子晶体平板的二氧化硅细胞壁。我们提出了一种简单的制造策略,可将生物二氧化硅均匀且受控地置于DSSC内。在染料敏化之前,以低至6 wt%的生物硅石含量,生物硅石的集成可将光阳极的透光率降低至5%以下。增加的生物二氧化硅载量(17 wt%)可进一步增强光电流的产生。反射率测量表明,增强来自光子共振和Mie散射的综合作用。这些设备的整体效率分别提高了8%和14%。

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