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One-Step Synthesis of Fluorescent Carbon Dots for Bio-Labeling Assay

机译:生物标记测定荧光碳点的一步合成

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Luminescent carbon dots,a newcomer in the domain of nanolights and nanomaterials have been studied extensively since past few years due to their fascinating properties of sensor design,biocompatibility,cell tracking,or fluorescence based live cell assays,medical diagnosis,photocatalysts,and also being potential building blocks for nanodevices.In this study,one-pot green synthesis of water dispersible fluorescent carbon dots have been synthesized by using roasted gram shells.The structural and optical properties of the asprepared carbon dots are characterized by TEM,FTIR,UV-vis absorption,photoluminescence spectra.The carbon dots showed greenish blue fluorescence under UV irradiation,excitation dependent emission,upconverted emission,high pH tolerance,and good biocompatibility.The carbon dots labeled Escherichia coli(E.coli)unveiled multicolor emission behavior under different excitation wavelength.These carbon dots showed their superiority with respect to commercially available synthetic dyes which have severe limitations including photobleaching effect,high cost,etc.The incorporation of carbon dots in the bacterial culture medium does not show any kind of growth delay of the bacterium up to 400mgmL~(-1).The goal is to establish this carbon dots in bio-labeling assay with its physicochemical features(small particle size,high luminescence efficiency,good biocompatibility,low toxicity)against various environments such as wide range of pH,high ionic medium.Concisely,this work bestows an innovative aspect to the commercialization of carbon dots as a potent alternative to synthetic organic dyes for multicolor emitting probes for cell-labeling gram negative bacteria E.coli.
机译:由于传感器设计,生物相容性,细胞跟踪或荧光的活细胞测定,医学诊断,光催化剂以及荧光的活细胞测定,医学诊断,光催化剂以及也是如此用于纳米型的潜在构建块。本研究,通过使用烤革兰壳合成了一种水分散荧光碳点的单壶绿色合成。asprepared碳点的结构和光学性质的特征在于TEM,FTIR,UV-Vis吸收,光致发光光谱。碳点显示紫外线照射,激发依赖性排放,较高的发射,高pH耐受性和良好的生物相容性。标记的大肠杆菌(大肠杆菌)在不同激发波长下揭开了多色发射行为的碳点。这些碳点相对于市售合成液显示了它们的优越性具有严重限制的IC染料,包括光漂白效果,高成本等。在细菌培养基中的碳点掺入不显示细菌的任何种类的生长延迟,高达400mgml〜(-1)。目标是建立这种碳点在生物标记测定中,其物理化学特征(小粒度,高发光效率,良好的生物相容性,低毒性)对各种环境,如宽范围的pH值,高离子介质。这项工作赋予了创新的方面碳点作为合成有机染料的有效替代品,用于多色发光探针,用于细胞标记革兰阴性细菌大肠杆菌。

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