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首页> 外文期刊>Journal of Colloid and Interface Science >Linear and nonlinear optical properties of functionalized CdSe quantum dots prepared by plasma sputtering and wet chemistry
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Linear and nonlinear optical properties of functionalized CdSe quantum dots prepared by plasma sputtering and wet chemistry

机译:通过等离子体溅射和湿化学法制备的功能化CdSe量子点的线性和非线性光学性质

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摘要

We develop an innovative manufacturing process, based on radio-frequency magnetron sputtering (RFMS), to prepare neat CdSe quantum dots (QDs) on glass and silicon substrates and further chemically functionalize them. In order to validate the fabrication protocol, their optical properties are compared with those of QDs obtained from commercial solutions and deposited by wet chemistry on the substrates. Firstly, AFM measurements attest that nano-objects with a mean diameter around 13 nm are located on the substrate after RFMS treatment. Secondly, the UV-Vis absorption study of this deposited layer shows a specific optical absorption band, located at 550 nm, which is related to a discrete energy level of QDs. Thirdly, by using two-color sum-frequency generation (2C-SFG) nonlinear optical spectroscopy, we show experimentally the functionalization efficiency of the RFMS CdSe QDs layer with thiol derived molecules, which is not possible on the QDs layer prepared by wet chemistry due to the surfactant molecules from the native solution. Finally, 2C-SFG spectroscopy, performed at different visible wavelengths, highlights modifications of the vibration mode shape whatever the QDs deposition method, which is correlated to the discrete energy level of the QDs. (C) 2015 Elsevier Inc. All rights reserved.
机译:我们开发基于射频磁控溅射(RFMS)的创新制造工艺,以在玻璃和硅基板上制备纯净的CdSe量子点(QD)并对其进行化学功能化。为了验证制造方案,将其光学性能与从商业解决方案中获得并通过湿法化学沉积在基板上的QD进行了比较。首先,AFM测量证明RFMS处理后,平均直径约为13 nm的纳米物体位于基板上。其次,对该沉积层的UV-Vis吸收研究表明,特定的光吸收带位于550 nm,这与QD的离散能级有关。第三,通过使用双色和频产生(2C-SFG)非线性光学光谱,我们实验证明了RFMS CdSe QDs层具有硫醇衍生分子的功能化效率,这在湿化学制备的QDs层上是不可能的来自天然溶液的表面活性剂分子。最后,在不同的可见光波长下进行的2C-SFG光谱显示,无论QDs沉积方法如何,振动模式形状的变化都与QDs的离散能级相关。 (C)2015 Elsevier Inc.保留所有权利。

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