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Blue-Emitting Small Silica Particles Incorporating ZnSe-Based Nanocrystals Prepared by Reverse Micelle Method

机译:反向胶束法制备的掺有ZnSe基纳米晶体的发蓝光二氧化硅小颗粒

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摘要

ZnSe-based nanocrystals (ca. 4-5 nm in diameter) emitting in blue region (ca. 445 nm) were incorporated in spherical small silica particles (20–40 nm in diameter) by a reverse micelle method. During the preparation, alkaline solution was used to deposit the hydrolyzed alkoxide on the surface of nanocrystals. It was crucially important for this solution to include Zn2+ ions and surfactant molecules (thioglycolic acid) to preserve the spectral properties of the final silica particles. This is because these substances in the solution prevent the surface of nanocrystals from deterioration by dissolution during processing. The resultant silica particles have an emission efficiency of 16% with maintaining the photoluminescent spectral width and peak wavelength of the initial colloidal solution.
机译:通过逆胶束法将在蓝色区域(约445 nm)发射的ZnSe基纳米晶体(直径约4-5 nm)掺入球形小二氧化硅颗粒(直径20–40 nm)中。在制备过程中,使用碱性溶液将水解的醇盐沉积在纳米晶体的表面上。对于该溶液而言,至关重要的是,要包含Zn 2 + 离子和表面活性剂分子(巯基乙酸),以保留最终二氧化硅颗粒的光谱特性。这是因为溶液中的这些物质防止纳米晶体的表面在加工过程中由于溶解而变质。在维持初始胶体溶液的光致发光光谱宽度和峰值波长的同时,所得二氧化硅颗粒具有16%的发射效率。

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