分别用聚合物辅助沉积法和金属有机物分解法制备了WO_3和BiVO_4半导体薄膜电极。利用固体紫外-可见漫反射光谱、电化学阻抗和线性扫描伏安法,对WO_3和BiVO_4半导体薄膜电极的能带结构进行了表征。制备了WO_3/BiVO_4异质结复合光电极,并...分别用聚合物辅助沉积法和金属有机物分解法制备了WO_3和BiVO_4半导体薄膜电极。利用固体紫外-可见漫反射光谱、电化学阻抗和线性扫描伏安法,对WO_3和BiVO_4半导体薄膜电极的能带结构进行了表征。制备了WO_3/BiVO_4异质结复合光电极,并通过扫描电子显微镜、X射线衍射和X射线光电子能谱,对该复合光电极的断面形貌、晶型结构和物质组成进行了分析。最后,对WO_3/BiVO_4复合光电极的光电转化性能进行了研究。研究结果表明:均为单斜晶型的WO_3和BiVO_4之间形成了膜厚约为450 nm的II型异质结;在施加相对于可逆氢电极1.23 V的电势时,WO_3/BiVO_4光电极的光电流密度可以达到1.926 m A/cm^2,表现出了良好的光电转化性能。展开更多
Functional organic dyes have promising prospect in dye-sensitized solar cells as a crucial element, of which sensitizers based on donor-π-acceptor are the most important dyes. On the basis of the structures of the ar...Functional organic dyes have promising prospect in dye-sensitized solar cells as a crucial element, of which sensitizers based on donor-π-acceptor are the most important dyes. On the basis of the structures of the aromatic amine donors such as triphenylamine and indoline, this paper reviews the photoelectric conversion properties of organic sensitizers since 2008, and highlights research work in our laboratory in this area.展开更多
To study the ferroelectric photovoltaic effect based on polycrystalline films, preparation of high-quality polycrystalline films with low leakage and high remnant polarization is essential. Polycrystalline BiFeO3 (BF...To study the ferroelectric photovoltaic effect based on polycrystalline films, preparation of high-quality polycrystalline films with low leakage and high remnant polarization is essential. Polycrystalline BiFeO3 (BFO) thin films with extremely large remnant polarization (2Pr = 180 ~aC/cm2) were successfully deposited on glass substrates coated with indium tin oxide using a modified radio frequency magnetron sputtering method. Symmetric and asymmetric cells were constructed to investigate the ferroelectric photovoltaic effect in order to understand the relationship between polarization and photovoltaic response. All examined cells showed polarization-induced photovoltaic effect. Our findings also showed that the ferroelectric photovoltaic effect is highly dependent on the material used for the top electrode and the thickness of the polycrystalline film.展开更多
文摘分别用聚合物辅助沉积法和金属有机物分解法制备了WO_3和BiVO_4半导体薄膜电极。利用固体紫外-可见漫反射光谱、电化学阻抗和线性扫描伏安法,对WO_3和BiVO_4半导体薄膜电极的能带结构进行了表征。制备了WO_3/BiVO_4异质结复合光电极,并通过扫描电子显微镜、X射线衍射和X射线光电子能谱,对该复合光电极的断面形貌、晶型结构和物质组成进行了分析。最后,对WO_3/BiVO_4复合光电极的光电转化性能进行了研究。研究结果表明:均为单斜晶型的WO_3和BiVO_4之间形成了膜厚约为450 nm的II型异质结;在施加相对于可逆氢电极1.23 V的电势时,WO_3/BiVO_4光电极的光电流密度可以达到1.926 m A/cm^2,表现出了良好的光电转化性能。
基金supported by the National Natural Science Foundation of China (2116110444 and 21172073)National Basic Research Program of China (973 Project, 2011CB808400)+1 种基金the Fundamental Research Funds for the Central Universities (WJ0913001)Scientific Committee of Shanghai (10520709700)
文摘Functional organic dyes have promising prospect in dye-sensitized solar cells as a crucial element, of which sensitizers based on donor-π-acceptor are the most important dyes. On the basis of the structures of the aromatic amine donors such as triphenylamine and indoline, this paper reviews the photoelectric conversion properties of organic sensitizers since 2008, and highlights research work in our laboratory in this area.
基金supported by the National High Technology Research and Development Program(Grant No.2011AA050511)Jiangsu"333"Project,the Priority Academic Program Development of Jiangsu Higher Education Institutions and Research and Innovation Project for College Graduates of Jiangsu Province(Grant No.CXLX13_722)
文摘To study the ferroelectric photovoltaic effect based on polycrystalline films, preparation of high-quality polycrystalline films with low leakage and high remnant polarization is essential. Polycrystalline BiFeO3 (BFO) thin films with extremely large remnant polarization (2Pr = 180 ~aC/cm2) were successfully deposited on glass substrates coated with indium tin oxide using a modified radio frequency magnetron sputtering method. Symmetric and asymmetric cells were constructed to investigate the ferroelectric photovoltaic effect in order to understand the relationship between polarization and photovoltaic response. All examined cells showed polarization-induced photovoltaic effect. Our findings also showed that the ferroelectric photovoltaic effect is highly dependent on the material used for the top electrode and the thickness of the polycrystalline film.