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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Continuous hydrothermal flow synthesis of blue-luminescent, excitation-independent nitrogen-doped carbon quantum dots as nanosensors
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Continuous hydrothermal flow synthesis of blue-luminescent, excitation-independent nitrogen-doped carbon quantum dots as nanosensors

机译:蓝色发光,激发独立于纯氮气碳量子点作为纳米传感器的连续水热流合成

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Blue-luminescent N-doped carbon quantum dots (NCQDs) exhibiting rarely observed excitation independent optical properties are synthesised from citric acid in the presence of ammonia via a Continuous Hydrothermal Flow Synthesis (CHFS) approach. CHFS is an eco-friendly, rapid synthetic approach (within fractions of a second) facilitating ease of scale-up industrialization as well as offering materials with superior properties. The synthesised NCQDs readily disperse in aqueous solution, have an average particle size of 3.3 +/- 0.7 nm, with highest emission intensity at 441 nm (and a narrow full width at half maximum, FWHM similar to 78 nm) under a 360 nm excitation wavelength. N-doped carbon quantum dots, without any further modification, exhibited a high selectivity and sensitivity as a nano-sensor for the highly toxic and carcinogenic chromium(vi) ions. The nano-chemo-sensor delivers significant advantages including simplicity of manufacturing via a continuous, cleaner technology (using targeted biomass precursor), high selectivity, sensitivity and fast response leading to potential applications in environmental industry as well photovoltaics, bio-tagging, bio-sensing and beyond.
机译:使用连续的水热流量合成(CHFS)方法,在氨基中从氨基酸上合成了表现出很少观察到的激发独立光学性质的蓝亮N-掺杂的碳量子点(NCQDS)。 CHFS是一种环保,快速的合成方法(在二进制部分内)促进易扩大的工业化,以及提供具有优越特性的材料。易于分散在水溶液中的合成的NCQDS,平均粒度为3.3 +/- 0.7nm,在360nm激励下,441nm处的发射强度最高(半最大,fwhm,与78nm的窄全宽)。波长。没有任何进一步改性的N掺杂的碳量子点表现出高选择性和敏感性,作为高毒性和致癌铬(VI)离子的纳米传感器。纳米化疗传感器可提供显着的优势,包括通过连续的清洁技术(使用靶向生物质前体),高选择性,灵敏度和快速响应来提供显着的制造,导致环境工业中的潜在应用,生物标记,生物标记,生物标记传感和超越。

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