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Structural and Optical Properties of Cu2ZnSnS4 Thin Films Fabricated by Chemical Spray Pyrolysis

机译:化学喷雾热解制的Cu2ZNSN4薄膜的结构和光学性质

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Cu_2ZnSnS_4 (CZTS) absorber Layer fabricated by using chemical spray pyrolysis method as a fast, cheap and vacuum-free. The films have been deposited on preheated glass substrates at 400°C and thickness of about (400 nm) measured by gravimetric method. The structural, morphological, optical and electrical properties of all films have been investigated using XRD, Raman spectroscopy, Atomic Force Microscope (AFM), UV-Vis-NIR spectroscopy and Hall measurement. The crystallite size of the prepared films was estimated using Scherer's formula, the maximum crystallite size of (22.44nm) at concentration ratio (Cu/Zn+Sn=1.3M) which related to CZTS_E. Raman shift measurement of the CZTS thin films showed that the main peaks located at (330-335 cm~(-1)). The UV-Vis-NIR absorbance spectra were recorded in the region of (350- 900) nm to investigate the optical characteristics. The results have shown that the optical energy gap for allowed direct electronic transition was (1.55-2.31) eV with a high absorption coefficient (a>10~4 cm~(-1)) wich is suitable for solar cell applications. The Hall measurement found that maximum conductivity of (3.1017Ωcm)~(-1) at concentration ratio (Cu/Zn+Sn=1.1 M) which is related to CZTS_D thin film.
机译:Cu_2zNSNS_4(CZTS)通过使用化学喷雾热解法制造的吸收剂层作为快速,便宜和真空。通过重量法测量,将薄膜沉积在400℃和约(400nm)的400℃和厚度的预热玻璃基板上。使用XRD,拉曼光谱法,原子力显微镜(AFM),UV-Vis-Nir光谱和霍尔测量来研究所有膜的结构,形态,光学和电性能。使用Scherer的公式估计制备薄膜的微晶尺寸,浓度比(22.44nm)的最大微晶尺寸(Cu / Zn + Sn = 1.3m),其与CZTS_E有关。 CZTS薄膜的拉曼换档测量显示,位于(330-335cm〜(-1))的主峰。在(350-900)NM的区域中记录UV-Vis-Nir吸光光谱,以研究光学特性。结果表明,允许直接电子转变的光学能隙(1.55-2.31)EV,具有高吸收系数(A> 10〜4cm〜(-1)),适用于太阳能电池应用。霍尔测量发现,与CZTS_D薄膜有关的浓度比(Cu / Zn + Sn = 1.1M)的最大电导率(3.1017Ωcm)〜(-1)。

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