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Polyethylene glycol-coated blue-emitting silicon dots with improved properties for uses in aqueous and biological environments

机译:具有改善性能的聚乙二醇涂层发蓝光硅点,用于水性和生物环境

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Grafting of polyethylene glycol (PEG) to ultrasmall photoluminescent silicon dots (SiDs) is expected to improve and expand the applications of these particles to aqueous environments and biological systems. Herein we report a novel one-pot synthesis of robust, highly water compatible PEG-coated SiDs (denoted as PEG-SiDs) of (3.3 +/- 0.5) nm size. The nanoparticles' synthesis is based on the liquid phase oxidation of magnesium silicide using PEG as reaction media and leading to high PEG density grafting. PEG-SiDs enhanced photophysical, photosensitising, and solution properties in aqueous environments are described and compared to those of 2 nm size PEG-coated SiDs with low PEG density grafting (denoted as PEG-NHSiDs) obtained from a multistep synthesis strategy. PEG-SiDs form highly dispersed suspensions in water showing stable photoluminescence and quantum yields of Phi = 0.13 +/- 0.04 at 370 nm excitation in air-saturated suspensions. These particles exhibited the capacity of photosensitising the formation of singlet molecular oxygen, not observed for PEG-NHSiDs. PEG robust shielding of the silicon core luminescent properties is further demonstrated in bio-imaging experiments stressing the strong interaction between PEG-SiDs and Staphylococcus aureus smears by observing the photoluminescence of particles. PEG-SiDs were found to be nontoxic to S. aureus cells at concentrations of 100 mg ml(-1), though a bacteriostatic effect on S. aureus biofilms was observed upon UV-A irradiation under conditions where light alone has no effect.
机译:聚乙二醇(PEG)接枝到超小型光致发光硅点(SiDs)有望改善并扩展这些颗粒在水性环境和生物系统中的应用。本文中,我们报告了一种新型的一锅法合成的健壮,高度水相容性的PEG包覆的SiD(表示为PEG-SiD),尺寸为(3.3 +/- 0.5)nm。纳米颗粒的合成基于使用PEG作为反应介质的硅化镁的液相氧化,并导致高PEG密度接枝。描述了PEG-SiD在水性环境中增强的光物理,光敏性和溶液性质,并将其与从多步合成策略获得的具有低PEG密度接枝的2 nm大小PEG涂层的SiD(称为PEG-NHSiD)进行了比较。 PEG-SiDs在水中形成高度分散的悬浮液,在空气饱和的悬浮液中在370 nm激发下表现出稳定的光致发光和量子产率,Phi = 0.13 +/- 0.04。这些颗粒表现出光敏能力形成单线态分子氧,而PEG-NHSiDs则未观察到。在生物成像实验中进一步证明了PEG对硅核发光特性的稳健屏蔽,该实验通过观察颗粒的光致发光来强调PEG-SiD与金黄色葡萄球菌涂片之间的强相互作用。 PEG-SiDs在100 mg ml(-1)的浓度下对金黄色葡萄球菌细胞无毒,尽管在仅光不起作用的条件下进行UV-A照射后仍观察到对金黄色葡萄球菌生物膜具有抑菌作用。

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