首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >High-yield synthesis of strong photoluminescent N-doped carbon nanodots derived from hydrosoluble chitosan for mercury ion sensing via smartphone APP
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High-yield synthesis of strong photoluminescent N-doped carbon nanodots derived from hydrosoluble chitosan for mercury ion sensing via smartphone APP

机译:水溶性壳聚糖衍生的强光致发光N掺杂碳纳米点的高产率合成,可通过智能手机APP感测汞离子

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Photoluminescent carbon nanodots (CNDs) have offered considerable potential to be used in biomedical and environmental fields including live cell imaging and heavy metal ion detection due to their superior quantum emission efficiencies, ability to be functionalized using a variety of chemistries and apparent absence of toxicity. However, to date, synthetic yield of CNDs derived from biomass via hydrothermal carbonization is quite low. We report here the synthesis of nitrogen-doped carbon nanodots (N-doped CNDs) derived from hydrosoluble chitosan via hydrothermal carbonization. The synthetic yield could reach 38.4% which is 2.2-320 times increase compared with that from other biomass reported so far. These N-doped CNDs exhibited a high quantum yield (31.8%) as a consequence of nitrogen incorporation coincident with multiple types of functional groups (C=O, O-H, COOH, and NH2). We further demonstrate applications of N-doped CNDs as probes for live cell multicolor imaging and heavy metal ion detection. The N-doped CNDs offered potential as mercury ion sensors with detection limit of 80 nM. A smartphone application (APP) based on N-doped CNDs was developed for the first time providing a portable and low cost detection platform for detection of Hg2+ and alert of heavy metal ions contamination. (C) 2015 Elsevier B.V. All rights reserved.
机译:光致发光碳纳米点(CND)由于其卓越的量子发射效率,能够使用多种化学方法进行功能化以及明显没有毒性,因此在生物医学和环境领域(包括活细胞成像和重金属离子检测)中提供了巨大的潜力。然而,迄今为止,经由水热碳化从生物质衍生的CND的合成产率非常低。我们在这里报告了通过水热碳化衍生自水溶性壳聚糖的氮掺杂碳纳米点(N掺杂的CND)的合成。合成产量可达到38.4%,是迄今为止报道的其他生物质的2.2-320倍。由于氮掺入与多种类型的官能团(C = O,O-H,COOH和NH2)一致,这些N掺杂的CND表现出高的量子产率(31.8%)。我们进一步证明了N掺杂的CND作为活细胞多色成像和重金属离子检测的探针的应用。 N掺杂的CND提供了作为汞离子传感器的潜力,其检测极限为80 nM。首次开发了基于N掺杂CND的智能手机应用程序(APP),它提供了一种便携式且低成本的检测平台,用于检测Hg2 +和警告重金属离子污染。 (C)2015 Elsevier B.V.保留所有权利。

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