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Ultrafast carrier dynamics and third-order nonlinear optical properties of AgInS2/ZnS nanocrystals

机译:agins2 / ZnS纳米晶体的超快载体动力学和三阶非线性光学性能

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摘要

Broad photoluminescence (PL) emission, a large Stokes shift and extremely long-lived radiative lifetimes are the characteristics of ternary I-II-VI semiconductor nanocrystals (NCs), such as CuInS2 and AgInS2 . However, the lack of understanding regarding the intriguing PL mechanisms and photo-carrier dynamics limits their further applications. Here, AgInS2 and AgInS2/ZnS NCs were chemically synthesized and their carrier dynamics were studied by time-resolved PL spectroscopy. The results demonstrated that the surface defect state, which contributed dominantly to the non-radiative decay processes, was effectively passivated through ZnS alloying. Femtosecond transient absorption spectroscopy was also used to investigate the carrier dynamics, revealing the electron storage at the surface state and donor state. Furthermore, the two photon absorption properties of AgInS2 and AgInS2/ZnS NCs were measured using an open-aperture Z-scan technique. The improved third-order nonlinear susceptibility chi((3)) of AgInS2 through ZnS alloying demonstrates potential application in two photon PL biological imaging.
机译:广泛的光致发光(PL)发射,大的斯托克斯偏移和极长的辐射寿命是三元I-II-VI半导体纳米晶体(NCS)的特征,例如CuinS2和agins2。然而,关于有趣的PL机制和光载体动力学的缺乏了解限制了其进一步的应用。这里,agins2和agins2 / zns ncs化学合成,并且通过时间分辨的pl光谱研究了它们的载体动力学。结果表明,表面缺陷状态,其主要贡献到非辐射衰减过程,通过ZnS合金化有效地钝化。 Femtosecond瞬态吸收光谱还用于研究载波动力学,揭示表面状态和供体状态的电子存储。此外,使用开口孔径Z扫描技术测量agins2和agins2 / zns ncs的两个光子吸收性能。通过ZnS的改进的三阶非线性敏感性Chi((3))通过ZnS合金化证明了两个光子PL生物成像中的潜在应用。

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