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Fabrication of Remarkably Bright QD Densely‐Embedded Silica Nanoparticle

机译:制造非常明亮的QD密集嵌入式二氧化硅纳米粒子

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We developed a synthesis method for silica‐coated quantum dot (QD)‐densely‐embedded silica nanoparticle (Si@D‐QD@Si NP) with remarkably brighter fluorescence by increasing the number of QDs on silica NPs. Si@D‐QD@Si NPs exhibited a narrow size distribution and a high signal reproducibility. Red, green, and blue Si@D‐QD@Si NPs were successfully fabricated and characterized. The Si@D‐QD@Si NP carried 2.4 times more QDs than previously reported silica‐coated QD‐embedded silica NP (Si@QD@Si NP). The quantum yield of Si@D‐QD@Si NPs was slightly higher than Si@QD@Si NPs. The red Si@D‐QD@Si NPs showed approximately 26.6%, the green Si@D‐QD@Si NP 36.2%, and the blue Si@D‐QD@Si NP 39.3% higher fluorescence intensity compared to the corresponding Si@QD@Si NPs. This result implied that the particles can be used at bio‐field with a higher sensitive detection.
机译:我们开发了一种用于二氧化硅涂覆量子点(QD)的合成方法 - 通过增加二氧化硅NPS上的QD的数量,具有显着荧光的二氧化硅涂覆的量子点(QD) - 嵌入的嵌入式二氧化硅纳米粒子(Si-D-QD @ Si NP)。 SI @ D-QD @ SI NPS表现出窄尺寸分布和高信号再现性。红色,绿色和蓝色SI @ D-QD @ SI NPS被成功制作和特色。 SI @ D-QD @ SI NP比先前报告的二氧化硅涂覆的QD嵌入式硅NP携带了2.4倍的QDS(SI @ SI NP)。 SI @ D-QD @ SI NP的量子产量略高于SI @ SI NPS。红色si @ d-qd @ si nps显示约26.6%,绿色si @ d-qd @ si np 36.2%,而蓝色si @ d-qd @ si np 39.3%荧光强度比相应的si @相比较高39.3%。 QD @ si nps。该结果暗示颗粒可以在具有更高敏感性检测的生物场中使用。

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