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Structural evolution of carbon dots during low temperature pyrolysis

机译:在低碳点的构造演化热解温度

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Carbon dots (CDs) are an emerging class of photoluminescent material. Their unique optical properties arise from the discrete energy levels in their electronic states, which directly relate to their crystalline and chemical structure. It is expected that when CDs go through structural changes via chemical reduction or thermal annealing, their energy levels will be altered, inducing unique optoelectronic properties such as solid-state photoluminescence (PL). However, the detailed structural evolution and how the optoelectronic characteristics of CDs are affected remain unclear. Therefore, it is of fundamental interest to understand how the structure of CDs prepared by hydrothermal carbonisation (HTC) rearranges from a highly functionalised disordered structure into a more ordered graphitic structure. In this paper, detailed structural characterisation and in situ TEM were conducted to reveal the structural evolution of CDs during the carbonisation process, which have demonstrated a growth in aromatic domains and reduction in oxidation sites. These structural features are correlated with their near-infrared (NIR) solid-state PL properties, which may find a lot of practical applications such as temperature sensing, solid-state display lighting and anti-counterfeit security inks.
机译:碳点(cd)是一种新兴的一类发光材料。属性源自离散能级在他们的电子态,这直接相关水晶和化学结构。预计,当cd经过结构通过化学还原或热变化退火,他们的精力就会发生改变,诱导独特的光电特性等固态光致发光(PL)。详细的构造演化和如何光电特性的cd影响尚不清楚。理解的根本利益CDs由热液的结构碳化(HTC)重新从一个高度成一个更functionalised无序结构有序的石墨结构。详细的结构描述和原位TEM进行揭示的结构进化在碳化的cd过程中,显示出增长芳香域和减少氧化网站。近红外(NIR)固态PL属性,可以发现很多实用应用,如温度传感、固态照明和防伪安全油墨。

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