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Anatase TiO2 Hollow Microspheres Fabricated by Continuous Spray Pyrolysis as a Scattering Layer in Dye-Sensitised Solar Cells

机译:通过连续喷雾热解制的锐钛矿TiO2中空微球作为染料敏化太阳能电池中的散射层制造

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TiO2 hollow spheres, synthesised using Continuous Spray Pyrolysis (CoSP) reactor, were utilised as a s cattering layer in dye-sensitised solar cells (DSSC) and the device performance was investigated. The size of the TiO2 hollow spheres was about 170-300 nm and the thickness of the shell was about 55-60 nm. DSSC fabrication involved screen printing the TiO2 hollow spheres (HSs) as a scattering layer on top of TiO2 transparent layer (10 μm thick; 20 nm particle size) making a total thickness of 15 nm. The results suggested that the DSSC containing TiO2 HSs layer showed power conversion efficiency of 7.46% which is better than that containing single layer TiO2 transparent film (7.1%). This might be attributed to TiO2 HSs layer acting as light scattering layer. Hence the cell exhibits an enhanced light-harvesting performance, therefore leadingto an increment of photovoltaic performance compared to that for pure TiO2 transp arent film.
机译:使用连续喷雾热解(COSP)反应器合成的TiO 2中空球体被用作染料敏化太阳能电池(DSSC)的S粘性层,并研究了器件性能。 TiO 2中空球的尺寸约为170-300nm,壳的厚度为约55-60nm。 DSSC制造涉及丝网印刷TiO2中空球体(HSS)作为TiO 2透明层顶部的散射层(10μm厚; 20nm粒径),使总厚度为15nm。结果表明,含有TiO2 HSS层的DSSC显示功率转化效率为7.46%,比含有单层TiO 2透明膜(7.1%)更好。这可能归因于TiO2 HSS层作为光散射层。因此,该电池表现出增强的光收获性能,因此与纯TiO2 Transp薄膜相比,光伏性能的增量导致光伏性能增加。

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