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A facile high-speed vibration milling method to mass production of water-dispersible silicon quantum dots for long-term cell imaging

机译:一种用于大规模生产用于细胞长期成像的水分散性硅量子点的便捷高速振动铣削方法

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摘要

A high-speed vibration milling (HSVM) method was applied to synthesize water-dispersible silicon quantum dots (SiQDs). Highly reactive free radicals (HOOCCH2CH2 center dot) produced from an acyl peroxide under HSVM conditions reacted with hydrophobic Si chips to produce highly water-dispersible SiQDs, which were characterized in detail by spectroscopic and microscopic techniques. Further experiments showed that the SiQDs are photostable, biocompatible, and suitable for long-term fluorescent cellular imaging. Our results provide a new methodology for large-scale synthesis of water-dispersible SiQDs, which are promising for various optoelectronic and biological applications.
机译:高速振动铣削(HSVM)方法被应用于合成水分散性硅量子点(SiQDs)。在HSVM条件下,由酰基过氧化物产生的高反应性自由基(HOOCCH2CH2中心点)与疏水性硅片反应生成高度水分散性的SiQD,并通过光谱和显微镜技术对其进行了详细表征。进一步的实验表明,SiQD具有光稳定性,生物相容性,适合长期荧光细胞成像。我们的研究结果为大规模合成水分散型SiQD提供了一种新方法,这对于各种光电和生物应用都是有希望的。

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