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首页> 外文期刊>Nano: brief reports and reviews >Synthesis and Photo-Response of CuS Thin Films by an In Situ Multi-Deposition Process at Room Temperature: A Facile and Eco-Friendly Approach
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Synthesis and Photo-Response of CuS Thin Films by an In Situ Multi-Deposition Process at Room Temperature: A Facile and Eco-Friendly Approach

机译:室温下原位多重沉积法制备CuS薄膜及其光响应:一种简便且环保的方法

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Uniform hexagonal covellite CuS thin films were deposited at room temperature by an in situ solution chemical reaction using copper precursor solid films as cationic source and ammonium sulfide ethanol solution as anionic reaction medium. We investigated the influence of both ethanolamine and butanol contents used in copper nitrate/ethylene glycol monomethylether (EGME) cationic solution for the preparation of copper precursor solid films, deposition cycle numbers and annealing treatment of the as-grown thin films by X-ray diffraction (XRD), FESEM, energy dispersive X-ray fluorescence EDX, transmission electron microscopy-Selected area electronic diffraction (TEM-SAED), atomic force microscopy (AFM) and ultraviolet-visible-near-infrared (UV-Vis-NIR) measurements. Photo-response of the CuS thin films was characterized by linear sweep voltammetry. The deposited CuS thin films were used to sensitize TiO2 anodes for solar cell application. The results showed that the CuS films had two-dimension oriented, half-sheet shaped growing morphology standing disorderly but vertically to substrates, and the calculated texture coefficient TC(102) verified that the half-sheet shaped crystallites had (102) plane orientation. This in situ multi-deposition process had an average deposited rate of 9nm per cycle, and a self-perfect function to grow smooth, uniform and 2D oriented morphology with increase in the dip-cycle numbers. The photocurrent density was 14.5Ma/cm(2) at 1V versus Ag/AgCl electrode for the annealed CuS thin films. CuS-sensitized TiO2 solar cells had a maximum conversion efficiency of 0.224%.
机译:使用铜前体固体膜作为阳离子源,硫化铵乙醇溶液作为阴离子反应介质,通过原位溶液化学反应在室温下沉积均匀的六角形Covellite CuS薄膜。我们研究了硝酸铜/乙二醇单甲醚(EGME)阳离子溶液中乙醇胺和丁醇含量对制备铜前体固体膜,淀积循环数和通过X射线衍射对生长的薄膜进行退火处理的影响(XRD),FESEM,能量色散X射线荧光EDX,透射电子显微镜选择区域电子衍射(TEM-SAED),原子力显微镜(AFM)和紫外可见近红外(UV-Vis-NIR)测量。通过线性扫描伏安法表征了CuS薄膜的光响应。沉积的CuS薄膜用于敏化TiO2阳极,用于太阳能电池。结果表明,CuS薄膜具有二维取向的,半片状的生长形态,无序但垂直于基底,并且计算的织构系数TC(102)验证了半片状的微晶具有(102)平面取向。这种原位多沉积工艺的每个循环平均沉积速率为9nm,并且具有自完善的功能,可以随着浸入次数的增加而生长出光滑,均匀和2D定向的形态。与退火的CuS薄膜的Ag / AgCl电极相比,在1V下光电流密度为14.5Ma / cm(2)。 CuS敏化的TiO2太阳能电池的最大转换效率为0.224%。

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