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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >One-step synthesis of carbon nanoparticles and yellow to blue fluorescent nanocarbons in flame reactors
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One-step synthesis of carbon nanoparticles and yellow to blue fluorescent nanocarbons in flame reactors

机译:碳纳米粒子的一步合成和黄色对火焰反应器中的蓝荧光纳米碳

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摘要

We propose a one-step synthesis for the large production of carbon nanoparticles (CNP) based on a flame reactor synthesis approach in which the key tunable parameter is the fuel composition. Specifically, the properties of CNP including fluorescent nanocarbons could be varied by fueling a premixed flame with mixtures ranging from ethylene to benzene. CNP characterization was carried out through Raman and UV-Visible spectroscopy defining their in-plane crystallite size and optical band gap. By simply changing the relative percentages of ethylene/benzene in the fuel it is shown how CNP properties can be tuned, fixing the optical band gap and changing the crystallinity and particle size, or viceversa fixing the crystallinity and changing the optical band gap and particle size. Fluorescent nanocarbons presenting typical carbon nanodot characteristics could be obtained by extraction and simple filtration (<20 nm) of CNP. By changing the fuel composition, nanocarbons fluorescing from yellow to blue and showing a quantum yield moving from 3 to 10% could be easily produced. The properties of CNP and of their fluorescent fraction (<20 nm) are directly defined by the flame reactor conditions without any further modifications that is a key advantage for large-scale production of CNP and especially of fluorescent nanocarbons. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们提出了基于火焰反应器合成方法的大量生产的碳纳米粒子(CNP)的一步合成,其中关键可调参数是燃料组合物。具体地,包括荧光纳米烃的CNP的性质可以通过加油与乙烯与苯的混合物加油的混合火焰来改变。通过拉曼和UV可见光谱进行CNP表征,其限定其面内微晶尺寸和光学带隙。通过简单地改变燃料中的乙烯/苯的相对百分比,示出了如何调谐CNP性能,将光带间隙固定并改变结晶度和粒度,或者伏酚丝固定结晶度并改变光带间隙和粒度。呈现典型的碳纳米多特特性的荧光纳米碳可以通过萃取和简单的CNP萃取和简单的过滤(<20nm)获得。通过改变燃料组合物,可以容易地生产从黄色到蓝色荧光的纳米碳,并且显示出3至10%的量子产率。 CNP和它们的荧光级分(<20nm)的性质由火焰反应器条件直接定义,而没有任何进一步的修饰,这是大规模生产CNP和尤其是荧光纳米碳的关键优势。 (c)2019年elestvier有限公司保留所有权利。

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