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CdSe–CdTe Heterojunction Nanorods: Role ofCdTe Segment in Modulating the Charge Transfer Processes

机译:CdSe–CdTe异质结纳米棒:的作用CdTe段在调节电荷转移过程中的作用

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摘要

Heterojunction nanorods having dissimilar semiconductors possess charge transfer (CT) properties and are proposed as active elements in optoelectronic systems. Herein, we describe the synthetic methodologies for controlling the charge carrier recombination dynamics in CdSe–CdTe heterojunction nanorods through the precise growth of CdTe segment from one of the tips of CdSe nanorods. The location of heterojunction was established through a point-by-point collection of the energy-dispersive X-ray spectra using scanning transmission electron microscopy. The possibilities of the growth of CdTe from both the tips of CdSe nanorods and the overcoating of CdTe over CdSe segment were also ruled out. The CT emission in the heterojunction nanorods originates through an interfacial excitonic recombination and was further tuned to the near-infrared region by varying the two parameters: the aspect ratio of CdSe and the length of CdTe segment. These aspects are evidenced from the emission lifetime and the femtosecond transient absorption studies.
机译:具有不同半导体的异质结纳米棒具有电荷转移(CT)特性,被提议作为光电系统中的有源元件。在这里,我们描述了通过从CdSe纳米棒的尖端之一精确生长CdTe片段来控制CdSe–CdTe异质结纳米棒中的电荷载流子复合动力学的合成方法。通过使用扫描透射电子显微镜逐点收集能量色散X射线光谱来确定异质结的位置。还排除了从CdSe纳米棒的尖端生长CdTe的可能性以及CdSe片段上CdTe的覆盖层。异质结纳米棒中的CT发射是通过界面激子复合而产生的,并且通过改变两个参数:CdSe的纵横比和CdTe片段的长度,被进一步调谐到近红外区域。从发射寿命和飞秒瞬态吸收研究可以证明这些方面。

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