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CdS薄膜结构表征与光电化学性能研究

Structural and Photoelectrochemical Characterization of CdS Thin Film Electrodes in Photoelectrochemical Water Splitting System

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【作者】 苏进展李明涛张西民郭烈锦

【Author】 SU Jin-zhan,LI Ming-tao , ZHANG Xi-min , GUO Lie-jin (State Key Laboratory of Multiphase Flow in Power Engineering,Xi’an Jiaotong University, Xi’an 710049, China)

【机构】 西安交通大学动力工程多相流国家重点实验室

【摘要】 以超声喷雾热分解方法成功地制备了低成本高质量的CdS薄膜,用XRD、SEM、拉曼光谱、紫外可见吸收光谱,研究了4个不同沉积温度下制备的CdS薄膜的结构性质,并对其进行光电化学产氢性能测试。实验发现,薄膜结晶程度随着沉积温度的升高而增加,但禁带宽度保持不变。SEM测试显示薄膜均匀致密,表明此方法是一种有效的半导体薄膜电极制备方法。光电化学活性随着沉积温度的升高先增大后减小,在300℃为最佳,在187 mW/cm2的光照下此温度制备的电极的光电流密度饱和值约为4.1 mA/cm2,且在电极电势为-0.13 V(vs SCE)处的能量转化效率为0.68%。

【Abstract】 The structural properties of CdS thin films obtained by ultrasonic spray pyrolysis at different substrate temperature were studied by X-ray diffraction (XRD), scan electron microscope (SEM), Raman spectrum and Uv-vis absorption spectrum. The experimental results show that the crystallinity level gets higher with increasing substrate temperature while the bandgap remains constant. This deposition method should be an effective method as the deposited film looks uniform and smooth in the SEM image. Furthermore, the photoelectrochemical activities of CdS thin films used as electrode to split water to hydrogen and oxygen were investigated. The photoelectrochemical activity increases and then decreases with increasing substrate temperature which forms a peak value at 300℃ . Under a light intensity of 187 mW/cm2, the electrode deposited at 300℃ gives a saturated photocurrcnt of 4. 1 mA/cm2 with increasing electrode potential. The highest energy conversion efficiency was calculated as 0. 68% at electrode potential of - 0.13 V(vs SCE).

【基金】 国家重点基础研究发展规划项目(2003CB214500).
  • 【会议录名称】 第七届全国氢能学术会议专辑
  • 【会议名称】第七届全国氢能学术会议
  • 【会议时间】2006-11
  • 【会议地点】中国湖北武汉
  • 【分类号】O614.242
  • 【主办单位】中国可再生能源学会氢能专业委员会
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