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Raman spectroscopic study of CdS, PVA composite films

机译:CdS,PVA复合膜的拉曼光谱研究

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摘要

A new material, which can be used in solar energy utilization, is obtained here by adding different weights of poly(vinyl alcohol) (PVA) to the semiconducting material CdS. The effect of this addition was studied by using FT-Raman spectrometer (based on 1500 mW Nd: YAG laser at 1064 nm), UV-Vis-IR (190-800 nm) spectrophotometer, and X-ray diffractometer. Our experimental results indicated the appearance of several new Raman bands, which have not existed in both CdS and PVA. Some of the bands which are already existing in the Raman spectra of PVA showed an unexpected systematic increase in their intensities after the addition of CdS to the matrix. On the other hand, some of the new Raman bands appeared in special concentrations of PVA only, whereas some of the Raman bands of CdS were found to disappear after adding PVA. Finally, shifts in some bands associated with random increase in their intensities after adding PVA to CdS was detected in the FT-Raman analysis. The experimental evidence given here might be attributed to the occurrence of new bonds, indicating that the produced mixture is a new material. The assignment of the new bands as well as an interpretation of the obtained variations is given here. Our X-ray diffraction data confirmed the interpretation introduced here. Moreover, the UV-Vis spectra confirmed the existence of new absorption bands in the Visible region. The IN characteristic curve was measured for a selected concentration of the new composite material, showing a remarkable increase in the values of the conduction current of about two orders of magnitude as compared with the pure PVA material. (C) 2004 Wiley Periodicals, Inc. [References: 50]
机译:通过在半导体材料CdS中添加不同重量的聚乙烯醇(PVA),可以获得一种可用于太阳能利用的新材料。通过使用FT拉曼光谱仪(基于1064 nm的1500 mW Nd:YAG激光),UV-Vis-IR(190-800 nm)分光光度计和X射线衍射仪研究了这种添加的效果。我们的实验结果表明出现了几个新的拉曼谱带,而CdS和PVA均不存在。在将CdS添加到基质后,PVA拉曼光谱中已经存在的一些谱带显示出其强度出乎意料的系统性增加。另一方面,一些新的拉曼谱带仅在特殊浓度的PVA中出现,而发现一些CdS的拉曼谱带在添加PVA后消失。最终,在FT-拉曼分析中检测到将PVA添加到CdS中后,某些带的移动与强度随机增加相关。此处给出的实验证据可能归因于新键的出现,表明产生的混合物是新材料。这里给出了新频段的分配以及对获得的变化的解释。我们的X射线衍射数据证实了此处介绍的解释。而且,UV-Vis光谱证实了在可见光区域中存在新的吸收带。测量了新复合材料选定浓度的IN特性曲线,与纯PVA材料相比,导电电流值显着增加了大约两个数量级。 (C)2004 Wiley Periodicals,Inc. [参考:50]

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