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Hybrid bulk heterojunction solar cells fabricated by TiO2 aerogel and porphyrins

机译:TiO 2 气凝胶和卟啉制备的混合体异质结太阳能电池

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Hybrid bulk heterojunctions provide a technically and economically credible alternative to conventional silicon based photovoltaic technologies. New hybrid bulk heterojunction solar cells fabricated with a TiO2 aerogel and a series of porphyrins have been studied in this work. The porphyrins act as the sunlight absorber, electron donor, and hole-transporter, while the TiO2 aerogel is the electron acceptor and electron-transporter. The porphyrins are tetraphenylporphyrins with para substituted groups: stilbene branches, hydroxyl and p-methoxyl groups. The films were characterized by AFM and UV-Visible spectroscopy. Photoelectrical characterization was conducted by 2-probe J-V measurements. Highly transparent TiO2 nanostructured films with transmission in excess of 90% and nanocrystals of about 11 nm in diameter were prepared. The conversion efficiency of the devices was observed to be highly dependent on the hydrophilicity of the porphyrins. Best conversion efficiency for these devices was greater than 0.4%.
机译:混合体异质结为传统的基于硅的光伏技术提供了技术上和经济上可靠的替代方案。在这项工作中,研究了用TiO 2 气凝胶和一系列卟啉制备的新型混合体异质结太阳能电池。卟啉充当阳光吸收剂,电子给体和空穴传输剂,而TiO2气凝胶则充当电子受体和电子传输剂。卟啉是具有对位取代基的四苯基卟啉:二苯乙烯支链,羟基和对甲氧基。通过AFM和UV-可见光谱对膜进行表征。通过2-探针J-V测量进行光电表征。制备了透射率超过90%的高透明TiO 2 纳米结构薄膜,并制备了直径约11 nm的纳米晶体。观察到装置的转化效率高度依赖于卟啉的亲水性。这些设备的最佳转换效率大于0.4%。

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