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Nonlinear optical properties of semiconductor quantum dots and organic molecules in glasses prepared by the sol-gel method

机译:溶胶 - 凝胶法制备玻璃中半导体量子点和有机分子的非线性光学性能

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Nonlinear behavior of glasses and especially thin films prepared by the sol- gel method make these materials an interesting class for optoelectronic devices especially when connected with their wave guide properties. From theoretical point of view these materials provided models for three- dimensional quantum confinement and allow identification of the energy of the excited states. These energy states of the quantum dots are positioned between the discrete energy levels of the atoms or bands of molecules and the broad band of the condensed phase. We describe the preparation of glasses doped by fluorescein, acridine and methyl-orange and discuss the origin of their nonlinear properties. Preparation of glass films doped by CdS and CuCl quantum dots are also presented and their properties analyzed. The relation between the energies of the electronic states and size of the particles are discussed.
机译:眼镜的非线性行为,特别是通过溶胶方法制备的薄膜使这些材料成为光电器件的有趣类,特别是当与它们的波导特性连接时。从理论的角度来看,这些材料为三维量子限制提供了模型,并允许识别激发态的能量。量子点的这些能量状态位于分子的原子或带状的离散能级和稠合相的宽带之间。我们描述了由荧光素,吖啶和甲基橙掺杂的眼镜的制备,并讨论其非线性性质的起源。还提出了Cds和CuCl量子点掺杂的玻璃膜的制备,分析了它们的性质。讨论了电子状态的能量与粒子的大小之间的关系。

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