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Temperature dependent characterizations of chemically deposited (Cd_x-Zn_(1-x))S nanocrystalline films for solar cell applications

机译:用于太阳能电池应用的化学沉积(CD_X-Zn_(1-X))纳米晶体膜的温度依赖性表征

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We report on the deposition of (Cd-x-Zn1-x)S (x = 0.85, 0.75, 0.65, 0.55) ternary alloys on FTO substrate by chemical bath deposition (CBD) technique. The structural transformation, texture and optical properties of these films deposited at different temperatures (60 degrees C, 70 degrees C, 80 degrees C and 90 degrees C) are investigated and analyzed. X-ray diffraction patterns show hexagonal phase of deposited films with the most intense peak corresponding to (002) plane. Flower-like structure with layer by layer growth is revealed through field emission scanning electron microscopy (FESEM). A uniform and adherent surface is observed in different films, which signifies the CBD impact on the material. The roughness of the film surface and the thickness in the nano-range are identified by the atomic force microscopy (AFM) and high-resolution transmission electron microscopy (HRTEM), respec-tively. The energy dispersive X-ray (EDX) spectra confirm the elemental composition in the deposited films. The absorption edges shift towards the lower wavelength region with an increase in temperature of deposition, and the band-gap values (Eg) estimated with Tauc's plots range from 2.58 eV to 2.66 eV. Optical constants are also measured from the transmittance spectra. The transmission is found to be very high in the visible region. The efficiency of the (Cd-x-Zn1-x)S/CdTe solar cell is estimated to be 8.19%. The key outcomes of our work are low absorption and high transmission of the deposited films making them suitable for fabricating an efficient PV device.
机译:我们对(CD-X-的Zn1-X)S(X = 0.85,0.75,0.65,0.55)通过化学浴沉积FTO基板上的三元合金(CBD)技术的沉积情况。研究并分析这些沉积在不同温度(60℃,70℃,80℃和90℃)的这些薄膜的结构转化,质地和光学性质。 X射线衍射图案显示沉积膜的六边形相,其具有对应于(002)平面的最强烈的峰值。通过透析扫描电子显微镜(FESEM)揭示了通过层生长层的花状结构。在不同的膜中观察到均匀和粘附的表面,这表示CBD对材料的影响。通过原子力显微镜(AFM)和高分辨率透射电子显微镜(HRTEM)鉴定膜表面的粗糙度和纳米范围内的厚度,Replec-Tive。能量分散X射线(EDX)光谱在沉积的薄膜中确认元素组合物。吸收边缘随着沉积温度的增加而朝向下波长区域移动,并且带间隙值(例如)估计,通过Tauc的绘图的绘制范围为2.58eV至2.66eV。光学常数也来自透射率光谱。发现传输在可见区域中非常高。估计(CD-X-Zn1-X)S / CDTE太阳能电池的效率为8.19%。我们工作的关键结果是沉积薄膜的较低吸收和高传输,使其适合制造有效的PV器件。

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