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少层PtSe_(2)中光生载流子超快动力学研究
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作者 杨金 王云峰 +2 位作者 储玲巧 蒋华超 苏付海 《量子电子学报》 CAS CSCD 北大核心 2023年第2期282-292,共11页
二维PtSe_(2)具备宽可调带隙、高稳定性等优点,在新型光电器件方面具有极大应用价值。利用时间分辨太赫兹光谱研究了不同厚度PtSe_(2)中的光生载流子超快动力学,发现该材料瞬态太赫兹光电导的幅度及其激发光强度依赖性随材料厚度的增加... 二维PtSe_(2)具备宽可调带隙、高稳定性等优点,在新型光电器件方面具有极大应用价值。利用时间分辨太赫兹光谱研究了不同厚度PtSe_(2)中的光生载流子超快动力学,发现该材料瞬态太赫兹光电导的幅度及其激发光强度依赖性随材料厚度的增加呈现出显著的非线性增加趋势。通过太赫兹光电导频谱分析,获得了光生载流子浓度、散射时间、背散射因子等动力学参数,并结合激发波长依赖的太赫兹弛豫动力学,推测束缚激子和自由载流子的竞争是引起这种厚度非线性关系的主要原因。此外,基于光泵浦-光探测光谱证明了PtSe_(2)中的激子效应及半导体-半金属转变。该工作演示了层数对PtSe_(2)中非平衡态动力学的有效调控,对贵金属基二维材料在光电器件方面的应用具有指导意义。 展开更多
关键词 超快谱学 光生载流子动力学 太赫兹 二硒化铂
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Rate Law for Photoelectrochemical Water Splitting Over CuO
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作者 Bo-Yuan Gao Wen-HuaLeng 《电化学(中英文)》 CAS 2024年第8期17-27,共11页
Photocatalytic splitting of water over p-type semiconductors is a promising strategy for production of hydrogen.However,the determination of rate law is rarely reported.To this purpose,copper oxide(CuO)is selected as ... Photocatalytic splitting of water over p-type semiconductors is a promising strategy for production of hydrogen.However,the determination of rate law is rarely reported.To this purpose,copper oxide(CuO)is selected as a model photocathode in this study,and the photogenerated surface charge density,interfacial charge transfer rate constant and their relation to the water reduction rate(in terms of photocurrent)were investigated by a combination of(photo)electrochemical techniques.The results showed that the charge transfer rate constant is exponential-dependent on the surface charge density,and that the photocurrent equals to the product of the charge transfer rate constant and surface charge density.The reaction is first-order in terms of surface charge density.Such an unconventional rate law contrasts with the reports in literature.The charge density-dependent rate constant results from the Fermi level pinning(i.e.,Galvani potential is the main driving force for the reaction)due to accumulation of charge in the surface states and/or Frumkin behavior(i.e.,chemical potential is the main driving force).This study,therefore,may be helpful for further investigation on the mechanism of hydrogen evolution over a CuO photocathode and for designing more efficient CuO-based photocatalysts. 展开更多
关键词 CuO Photoelectrochemical water splitting Electrochemical impedance spectroscopy Rate law Kinetics of photogenerated carriers
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