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首页> 外文期刊>ACS nano >Ultrafast carrier dynamics in type II ZnSe/CdS/ZnSe nanobarbells
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Ultrafast carrier dynamics in type II ZnSe/CdS/ZnSe nanobarbells

机译:II型ZnSe / CdS / ZnSe纳米杠铃中的超快载流子动力学

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We employ femtosecond transient absorption spectroscopy to get an insight into ultrafast processes occurring at the interface of type II ZnSe/CdS heterostructured nanocrystals fabricated via colloidal routes and comprising a barbell-like arrangement of ZnSe tips and CdS nanorods. Our study shows that resonant excitation of ZnSe tips results in an unprecedently fast transfer of excited electrons into CdS domains of nanobarbells (<0.35 ps), whereas selective pumping of CdS components leads to a relatively slow injection of photoinduced holes into ZnSe tips (τ_h= 95 ps). A qualitative thermodynamic description of observed electron processes within the classical limit of Marcus theory was used to identify a specific charge transfer regime associated with the ultrafast electron injection into CdS. Potential photocatalytic applications of the observed fast separation of carriers along the main axis of ZnSe/CdS barbells are discussed.
机译:我们使用飞秒瞬态吸收光谱法来了解通过胶体路线制造的II型ZnSe / CdS异质结构纳米晶体的界面处发生的超快过程,该过程包括ZnSe尖端和CdS纳米棒的杠铃状排列。我们的研究表明,ZnSe尖端的共振激发导致被激发电子以前所未有的速度快速转移到纳米杠铃的CdS域(<0.35 ps),而CdS成分的选择性泵浦导致光致空穴向ZnSe尖端的注入相对较慢(τ_h= 95 ps)。在Marcus理论的经典极限范围内,对观察到的电子过程进行了定性的热力学描述,以确定与CdS中超快电子注入相关的特定电荷转移机制。讨论了沿ZnSe / CdS杠铃主轴快速分离载流子的潜在光催化应用。

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