首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Novel preparation and near-infrared photoluminescence of uniform core-shell silver sulfide nanoparticle@mesoporous silica nanospheres
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Novel preparation and near-infrared photoluminescence of uniform core-shell silver sulfide nanoparticle@mesoporous silica nanospheres

机译:均一的核壳型硫化银纳米粒子@介孔二氧化硅纳米球的新颖制备和近红外光致发光

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In this paper, we report a facile one-pot route to prepare core-shell Ag2S@MSN mesoporous silica nanospheres with near-infrared (NIR) photoluminescent properties. The Ag2S@MSN nanospheres have uniform core-shell structures with single monoclinic α-Ag2S nanocrystal core (~17 nm), ordered mesoporous silica shell (the thickness of ~20 nm), very high surface area (~909 m~2 g~(-1)), and uniform pore size (~2.6 nm). The core-shell Ag2S@MSN nanospheres show NIR emission at around 1275 nm excited by a 648 nm laser diode, which can be observed in a wide range of concentration (0.2~3.2 mg mL~(-1)). The stability of the NIR photoluminescence for the core-shell Ag2S@MSN nanospheres is greatly improved compared to the bare Ag2S nanocrystals. The NIR emission intensity could be enhanced after the hydrothermal treatment with the increase of crystallinity of the silver sulfide cores. The thickness of mesoporous silica shell could be tuned by adjusting the amount of silica source. Furthermore, the core-shell Ag2S@MSN nanocomposites with several small Ag2S nanoparticles in one mesoporous silica shell could also be obtained, which may be a good candidate for bioimaging and biolabeling.
机译:在本文中,我们报告了一种简便的一锅法,以制备具有近红外(NIR)光致发光特性的核-壳Ag2S @ MSN中孔二氧化硅纳米球。 Ag2S @ MSN纳米球具有均匀的核-壳结构,具有单个单斜晶α-Ag2S纳米晶体核(〜17 nm),有序介孔二氧化硅壳(〜20 nm的厚度),非常高的表面积(〜909 m〜2 g〜) (-1))和均匀的孔径(〜2.6 nm)。核壳型Ag2S @ MSN纳米球在648 nm激光二极管激发下在约1275 nm处显示NIR发射,可以在宽范围的浓度(0.2〜3.2 mg mL〜(-1))中观察到。与裸露的Ag2S纳米晶体相比,核壳型Ag2S @ MSN纳米球的NIR光致发光稳定性大大提高。水热处理后,随着硫化银核的结晶度增加,NIR发射强度可以提高。介孔二氧化硅壳的厚度可以通过调节二氧化硅源的量来调节。此外,还可以在一个介孔二氧化硅壳中获得具有几个小的Ag2S纳米颗粒的核壳型Ag2S @ MSN纳米复合材料,这可能是生物成像和生物标记的良好候选者。

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