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Spectroscopic Characteristics of Carbon Dots (C-Dots) Derived from Carbon Fibers and Conversion to Sulfur-Bridged C-Dots Nanosheets

机译:碳纤维衍生的碳点(C-点)的光谱特征并转化为硫桥连的C-点纳米片

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We synthesized sub-10 nm carbon nanoparticles (CNPs) consistent with photoluminescent carbon dots (C-dots) from carbon fiber starting material. The production of different C-dots fractions was monitored over seven days. During the course of the reaction, one fraction of C-dots species with relatively high photoluminescence was short-lived, emerging during the first hour of reaction but disappearing after one day of reaction. Isolation of this species during the first hour of the reaction was crucial to obtaining higher-luminescent C-dots species. When the reaction proceeded for one week, the appearance of larger nanostructures was observed over time, with lateral dimensions approaching 200 nm. The experimental evidence suggests that these larger species are formed from small C-dot nanoparticles bridged together by sulfur-based moieties between the C-dot edge groups, as if the C-dots polymerized by cross-linking the edge groups through sulfur bridges. Their size can be tailored by controlling the reaction time. Our results highlight the variety of CNP products, from sub-10 nm C-dots to similar to 200 nm sulfur-containing carbon nanostructures, that can be produced over time during the oxidation reaction of the graphenic starting material. Our work provides a clear understanding of when to stop the oxidation reaction during the top-down production of C-dots to obtain highly photoluminescent species or a target average particle size.
机译:我们从碳纤维原料合成了与光致发光碳点(C点)一致的10 nm以下碳纳米颗粒(CNP)。在七天内监测了不同碳点馏分的产生。在反应过程中,一小部分具有相对较高的光致发光的C点物质是短暂的,在反应的第一个小时出现,但在一天的反应后消失。在反应的第一个小时中隔离这种物质对于获得更高发光的C点物质至关重要。当反应进行一周时,随着时间的推移观察到较大的纳米结构的出现,其横向尺寸接近200nm。实验证据表明,这些较大的物种由小的C点纳米颗粒形成,这些纳米颗粒通过C点边缘基团之间的硫基部分桥接在一起,就好像C点通过硫桥使边缘基团交联而聚合了。它们的大小可以通过控制反应时间来定制。我们的研究结果突出了CNP产品的多样性,从低于10 nm的C点到类似于200 nm的含硫碳纳米结构,这些产品在石墨烯原料的氧化反应过程中会随着时间的推移而产生。我们的工作清楚地了解了在自上而下生产C点的过程中何时停止氧化反应以获得高度光致发光的物质或目标平均粒径。

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