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Iron-doped titania thin films with enhanced photovoltaic efficiency: Effects of iron concentration and rectifying layer

机译:具有增强的光伏效率的铁掺杂二氧化钛薄膜:铁浓度和整流层的影响

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Iron-doped titania thin films were fabricated by spin-coating from sol-gel pastes of iron nitrate and titanium isopropoxide and evaluated for photovoltaic conversion in a solar cell. The Fe addition induced a red shift in optical absorption, an electronic interaction between Fe and Ti atoms and an increase in donor density, indicating the excitation of electrons from Fe donors. All Fe-added titania films were shown more hydrophilic than the titania film and produced higher photocurrents when irradiated by visible light. Under ultraviolet illumination, low amounts of Fe dopants promoted photocurrent yield because they served as electron traps for enhancing charge carrier separation, and the yield was lowered at higher Fe concentrations due to charge carrier recombination at Fe sites. Increasing Fe content led to a decrease in open-circuit photovoltage. Addition of a Fe-TiO_2 film between the TiO_2 layer and the conductive substrate caused a marked increase in photocurrent. The improved cell performance is related to the behavior of rectifying electron flow through two oxide layers, composed of electron transfer and diffusion. Results demonstrate that the Fe doping provides photoactive traps to mediate electron transport for enhancing quantum conversion efficiency. Mechanistic aspects about the role of the Fe traps are discussed.
机译:通过旋涂硝酸铁和异丙醇钛的溶胶-凝胶法制备掺杂铁的二氧化钛薄膜,并评估其在太阳能电池中的光电转换。 Fe的添加引起光吸收的红移,Fe和Ti原子之间的电子相互作用以及施主密度的增加,表明激发了来自Fe施主的电子。显示所有添加铁的二氧化钛膜比二氧化钛膜更亲水,并且在可见光照射下产生更高的光电流。在紫外线照射下,少量的Fe掺杂剂可提高光电流产率,因为它们充当电子陷阱以增强电荷载流子分离,并且由于Fe位置处的载流子复合,在较高的Fe浓度下产率会降低。 Fe含量的增加导致开路光电压的降低。在TiO_2层和导电基材之间添加Fe-TiO_2膜会导致光电流显着增加。改进的电池性能与整流通过两个氧化物层的电子流的行为有关,该行为由电子转移和扩散组成。结果表明,Fe掺杂提供了光敏陷阱以介导电子传输,从而提高了量子转换效率。讨论了有关Fe陷阱作用的机械方面。

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