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Effect of Zn/Sn molar ratio on the microstructural and optical properties of Cu2Zn1-xSnxS4 thin films prepared by spray pyrolysis technique

机译:Zn / Sn摩尔比对喷雾热解技术制备的Cu2ZN1-XSNXS4薄膜微结构和光学性能的影响

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摘要

Quaternary kesterite Cu2ZnSnS4 (CZTS) compound is one of the most promising semiconductor materials consisting of abundant and eco-friendly elements for absorption layer in thin film solar cells. The effect of Zn/Sn ratio on Cu2Zn1-xSnxS4 (0 = x = 1) thin films were studied by deposited by varying molar volumes in the precursor solution of zinc and tin was carried out in proportion of (1-x) and x respectively onto soda lime glass substrates kept at 573 K by using chemical spray pyrolysis technique. The GIXRD pattern revealed that the films having composites of Cu2ZnSnS4, Cu2SnS3, Sn2S3, CuS and ZnS phases. The crystallinity and grain size were found to increase by increasing the x value and the preferential orientation along (103), (112), (108) and (111) direction corresponding to CZTS, Cu2SnS3, CuS, and ZnS phases respectively. Micro-Raman spectra exposed a prominent peak at 332 cm(-1) corresponding to the CZTS phase. Atomic force microscopy was employed to study the grain size and roughness of the deposited thin films. The optical band gap was found to lie between 1.45 and 2.25 eV and average optical absorption coefficient was found to be greater than 105 cm(-1). Hall measurements exhibited that all the deposited Cu2Zn1-xSnxS4 films were p type and the resistivity lies between 10.9 x 10(-2) Omega cm and 149.6 x 10(-2) Omega cm.
机译:季克斯特矿石Cu2zNSN4(CZT)化合物是最有前途的半导体材料之一,由薄膜太阳能电池中吸收层的丰富和生态友好的元件组成。通过在锌和锡的前体溶液中沉积来研究Zn / Sn比对Cu2ZN1-XsnxS4(0& = x = 1)薄膜的影响。按比例进行锌和锡的前体溶液(1-x通过使用化学喷雾热解技术,分别在苏打石灰玻璃基板上以573k保持在苏打石灰玻璃基板上。 GixRD图案显示,具有Cu2ZnSNS4,Cu2SNS3,SN2S3,CU和ZnS相具有复合材料的膜。发现结晶度和晶粒尺寸通过增加X值和沿(103),(112),(108)和(111)方向分别对应于CZTS,Cu2SNS3,CU和ZnS相位的X值和优先取向而增加。微拉曼光谱暴露于对应于CZTS相的332cm(-1)的突出峰。采用原子力显微镜检查沉积薄膜的晶粒尺寸和粗糙度。发现光带间隙位于1.45和2.25eV之间,并且发现平均光学吸收系数大于105cm(-1)。霍尔测量表明,所有沉积的Cu2ZN1-XSNXS4薄膜是P型,电阻率位于10.9×10( - 2)ωcm和149.6×10(-2)ωcm之间。

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