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Photoanode of nanostructured TiO2 prepared by ultrasonic irradiation assisted of sol-gel with P-25 for dye-sensitized Solar Cells

机译:通过超声波照射制备的纳米结构TiO2的光电滤镜用P-25辅助溶胶 - 凝胶,用于染料敏化太阳能电池

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In this work, TiO2 photoanode have been prepared by mixing the commercial titania powder P-25 with a titanium sol gel. In order to improve the mixing condition the paste was gone through the ultrasonic treatment. After that, the doctor blade technique was used to deposit TiO2 paste on ITO-coated glass substrate. There were two monolayer photoanodes with ultrasonic and without ultrasonic TiO2 pastes of about the same thickness have been prepared and their effects on the overall cell performances of the DSSC were compared. From the solar simulator measurement the solar energy conversion efficiency (η) of 2.6642% under AM 1.5 was obtained with the ultrasonic photoanode DSSC which correspond to the short-circuit photocurrent density (Jsc) and open-circuit voltage (Voc) of 7.2552 mA/cm2 and 0.5168 V, respectively, while 1.3127% conversion efficiency (η) obtained from without ultrasonic TiO2 photoanode. The TiO2 photoanode with ultrasonic were efficiently in the fabrication process of dye-sensitized solar cells (DSSCs), where the improvement which was almost double from unsonicated film for the overall energy conversion efficiency (η) that achieved for the sonicated TiO2 photoanode with the present of PEG.
机译:在这项工作中,通过将商业二氧化钛粉末P-25与钛溶胶凝胶混合来制备TiO2光电。为了改善混合状态,糊状物经过超声波处理。之后,使用刮刀技术在ITO涂覆的玻璃基板上沉积TiO 2浆料。有两种单层光阳极具有超声波,无需超声波TiO 2的粘贴,已经制备了大约相同的厚度,并且比较了它们对DSSC的整体细胞性能的影响。从太阳模拟器测量,使用超声波光电电流DSSC(JSC)和6.2552 mA /的开路电压(JSC)和开路电压(VOC)的超声波光电频率DSSC,获得2.6642%的太阳能转换效率(η)为2.6642%。 CM2和0.5168 V,分别为1.3127%的转换效率(η),无需超声波TiO2光电码。具有超声波的TiO2 PhotoNode在染料敏化太阳能电池(DSSCs)的制造过程中有效,其中几乎从未升压薄膜的改进,用于整体能量转换效率(η),该效率为Songated TiO2 PhotoNode与现在钉。

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