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Facile preparation of yellow and red emitting ZnCdSeS quantum dots and their third-order nonlinear optical properties

机译:深色制备黄色和红色发射ZnCdses量子点及其三阶非线性光学性能

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In this study, N-acetyl-L-cysteine-capped quaternary ZnCdSeS quantum dots (QDs) were prepared using a colloidal method in two different structures, which we refer to as ZnCdSeS-yellow and ZnCdSeS-red QDs. These high quality QDs were synthesized directly in aqueous solution with two different amounts of the selenium precursor. The structural and optical properties of the ZnCdSeS QDs were studied to determine the compositions of the QDs and their composition-dependent absorption and emission characteristics. Regardless of the composition of the QDs, transmission electron microscopy measurements demonstrated that both quaternary QDs were similar in size with narrow size distributions. Using a continuous wave (CW) He-Ne laser at 632.8 nm, the linear absorption coefficients were calculated for each sample as approximately 7.55 x 10(1) and 8.99 x 10(1) m(-1) for the ZnCdSeS-yellow and ZnCdSeS-red QDs, respectively. The magnitudes and signs of the third-order nonlinear refractive indices (n(2)) as well as the nonlinear absorption coefficients (beta) were determined for the as-prepared QDs based on the closed and open aperture Z-scan at different intensities. The results indicated positive signs of n(2) for both the ZnCdSeS QDs, thereby demonstrating the self-focusing effect in both QDs. The nonlinear susceptibility (chi((3))) values were also determined for the alloyed QDs. The n(2), beta, and chi((3)) values for the QDs were in the orders of 10(-12) m(2) W-1, 10(-4) mW(-1), and 10(-14) SI, respectively. Our results indicate that ZnCdSeS alloyed QDs are satisfactory candidate for use in nonlinear optical devices because of their intrinsic nonlinear and tunable emission properties.
机译:在该研究中,使用两种不同结构中的胶体方法制备N-乙酰-1-半胱氨酸封端的季型ZnCDSES量子点(QDS),我们将其称为ZnCDSES-黄色和ZnCDSES-RED QD。这些高质量的QD直接在具有两种不同量的硒前体的水溶液中合成。研究了ZnCDS QD的结构和光学性质,以确定QD的组成及其组成依赖性吸收和排放特性。无论QD的组成如何,透射电子显微镜测量都表明,季QD均匀尺寸相似,尺寸分布窄。使用连续波(CW)He-Ne激光器在632.8nm,为ZnCdses-黄色的每个样品计算为约7.55×10(1)和8.99×10(1)m(-1)的每个样品计算线性吸收系数。 ZnCDSES-RED QD分别。基于在不同强度下的闭合和开口孔径Z-Scan,确定三阶非线性折射率(N(2))以及非线性吸收系数(β)的幅度和迹象以及非线性吸收系数(β)。结果表明ZnCDS QDS的N(2)的正迹象,从而证明了两个QD中的自聚焦效应。也为合金QDS确定非线性敏感性(CHI((3)))值。 QD的N(2),β和CHI((3))值为10(-12)m(2)W-1,10(-4)MW(-1)和10的顺序(-14)Si分别。我们的结果表明,由于其固有的非线性和可调谐发射特性,ZnCDSES合金QD是用于非线性光学器件的令人满意的候选者。

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