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New Insight into the Concept of Carbonization Degree in Synthesis of Carbon Dots to Achieve Facile Smartphone Based Sensing Platform

机译:碳点合成中碳化程度概念的新认识以实现基于智能手机的便捷传感平台

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摘要

Direct pyrolysis of citric acid (CA) has been proved to be a facile bottom–up technique for making pristine carbon dots (CD) with homogenous size distribution. However, limited reports are available on systematic optimization of carbonization degree. In this investigation, pyrolysis temperatures between 160 °C and 220 °C were studied, based on CA thermal decomposition path, using various heating durations. The effect of the formation of more carbonized carbon particles (MCCPs), as the major byproduct of this method, on photoluminescence properties of CDs was also considered. The NaOH amount that neutralizes the solution and the effect of dilution on the emission intensity, were introduced as simple and accessible factors for monitoring carbonization degree, and an estimate of MCCP/CD ratio, respectively. The results show that the CDs fabricated at 160 °C, 50 minutes attain almost twice higher quantum yield (QY) of 29% than highest QY reported based on pyrolysis of CA. The so–prepared CDs can be employed as excellent candidates for turn–off sensing. As a proof of concept, detection limit of 50 nM for Hg2+ was achieved using a facile and inexpensive smartphone set–up that is able to quantify and compare fluorescent intensity in several samples simultaneously.
机译:柠檬酸(CA)的直接热解已被证明是一种简便的自下而上的技术,用于制造具有均一尺寸分布的原始碳点(CD)。但是,关于碳化程度的系统优化的报道有限。在这项研究中,根据CA热分解路径,使用不同的加热时间,研究了160 C至220 C之间的热解温度。作为该方法的主要副产品,人们还考虑了形成更多的碳化碳颗粒(MCCP)对CD的光致发光特性的影响。介绍了中和溶液的NaOH量和稀释对发射强度的影响,分别作为监测碳化程度和估算MCCP / CD比的简单易用因素。结果表明,在160°C,50分钟的条件下制造的CD,其量子产率(QY)几乎是基于CA热解的最高QY的两倍,达到29%。如此准备的CD可以用作关断感应的出色候选者。作为概念的证明,使用方便且便宜的智能手机设置即可实现Hg 2 + 的50 limitnM检出限,该设置能够同时量化和比较多个样品中的荧光强度。

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