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Surface modification and intrinsic green fluorescence emission of a detonation nanodiamondt

机译:爆轰纳米金刚石的表面改性和内在绿色荧光发射

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In this study, an extraordinary fluorescent nanodiamond (ND) produced from the mixture of TNT and hexogen by detonation and purified by a strong oxidizer is addressed. The pristine detonation nanodiamond (DND) exhibited intrinsic narrow green luminescence, which was significantly different from the fluorescence of nitrogen-vacancy (N-V) centers. For improving the water dispersibility and examining the effect of surface modification on the optical properties, hydrophilic sodium benzenesulfonate groups were covalently grafted onto the surface of the DND. The modified DND could be well dispersed in water with the concentration up to 1 mg mL~(-1). Moreover, big agglomerates of the pristine DND (2-3 μm) were simultaneously broken up to 300 nm in size upon surface modification. Importantly, the intrinsic fluorescence of the DND was unperturbed upon these changes.
机译:在这项研究中,提出了一种非常规的荧光纳米金刚石(ND),其通过爆炸由TNT和六原体的混合物产生,并通过强氧化剂进行纯化。原始爆轰纳米金刚石(DND)表现出固有的窄绿色发光,这与氮空位(N-V)中心的荧光显着不同。为了改善水分散性并检查表面改性对光学性能的影响,将亲水性苯磺酸钠基团共价接枝到DND的表面。改性的DND可以很好地分散在水中,浓度可达1 mg mL〜(-1)。此外,原始DND的大团聚物(2-3μm)在表面改性时同时被破碎至300 nm。重要的是,在这些变化下,DND的固有荧光不受干扰。

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