具有无氨缓冲液的cds -甘氨酸薄膜在不同温度下的光学和电学特性

D. Berman-Mendoza, D. Quiñones-Urías, S. Ferra-González, A. Vera-Marquina, A. Rojas-Hernández, R. Gómez Fuentes, A. García-Juárez, A. L. Leal-Cruz, A. Ramos-Carrasco
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摘要

本文报道了以甘氨酸为络合剂,以氨和无氨缓冲液为络合剂,采用化学浴沉积(CBD)法制备CdS薄膜,并对其电光性能进行了表征。在50、60、70和80℃的温度下,在热水浴中生长CdS薄膜。用原子力显微镜测定了膜的形貌;所得到的薄膜是均匀的,很好地粘附在衬底上,并且根据沉积温度反射出不同的颜色。通过对热处理后CdS薄膜的透射率和反射率的测量,研究了氨缓冲液对CdS薄膜光学性能和带隙的影响。用X射线衍射法测定了CdS薄膜的结晶度。因此,本研究采用无氨络合剂沉积CdS。在用于制备CdS薄膜的各种方法中,化学浴沉积(CBD)因其成本低、易于操作以及在各种衬底上掺杂和沉积的可能性大而最具吸引力。特别是,它可以通过在SiO2/Si衬底上沉积CdS薄膜来容易地获得场效应器件。具有有趣物理性质的异质结构可以通过这种方式来想象、实现和测试。也实现了结构CdS/PbS,并显示出良好的太阳能电池特性。
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Optical and electrical characterization of CdS-Glycine thin films with ammonia free buffer grown at different temperatures for solar cells applications
In this work we report the fabrication and electro-optical characterization of CdS thin films using glycine as complexing agent with ammonia and ammonia free buffer by the Chemical Bath Deposition (CBD) method. The CdS thin films were grown at different temperatures of 50, 60, 70 and 80 °C in a thermal water bath. The morphology of these films was determined using atomic force microscopy; the resultant films were homogeneous, well adhered to the substrate, and specularly reflecting with a varying color depending on the deposition temperature. Transmittance and reflectance measurements of thermally treated CdS films were carried to study the effect of the ammonia buffer on its optical properties and bandgap. The crystallinity of the CdS thin films was determined by means of X Ray diffraction measurements. Therefore, for this study, an ammonia-free complexing agent has been taken for the deposition of CdS. Among different methods, which are being used for the preparation of CdS films, Chemical Bath Deposition (CBD) is the most attractive due to its low cost, easy to handle and large possibilities regarding doping and deposition on various substrates. In particular it can be used to easily obtain field effect devices by depositing CdS thin films over a SiO2/Si substrate. Heterostructures with interesting physical properties can be imagined, realized and tested in this way.. Structures CdS/PbS also were realized and have shown good solar cell characteristics.
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