首页> 外文期刊>ACS applied materials & interfaces >N,S,P Co-Doped Carbon Nanodot Fabricated from Waste Microorganism and Its Application for Label-Free Recognition of Manganese(VII) and L-Ascorbic Acid and AND Logic Gate Operation
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N,S,P Co-Doped Carbon Nanodot Fabricated from Waste Microorganism and Its Application for Label-Free Recognition of Manganese(VII) and L-Ascorbic Acid and AND Logic Gate Operation

机译:N,S,P共掺杂碳纳米多,由废微生物制成及其用于无标记识别锰(VII)和L-抗坏血酸和逻辑栅极操作的应用

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摘要

A novel fluorescent probe based on N,S,P codoped carbon nanodots (N,S,P-CNDSac) is very simple and quickly fabricated by a one-step hydrothemial pyrolysis of Saccharomyces cerevisiae and utilized for label-free and "on-off-on" sequential detection of manganese(VII) and L-ascorbic acid (L-AA). The fluorescence of N,S,P-CNDSac can be effectively quenched by Mn(VII) based on an inner filter effect (IFE) and recovered upon the addition of L-AA due to the easy conversion of Mn(VII) to reduced states (i.e., Mn(IV), Mn(II), and Mn(0)) by L-AA. This probe exhibited favorable selectivity and sensitivity toward Mn(VII) and L-AA with detection limits of 50 nmol/L and 1.2 mu mol/L, respectively. Simultaneously, an "AND" logic gate based on the as-fabricated N,S,P-CNDSac has been constructed. Also, the as-proposed fluorescent probe was extended to detect Mn(VII) and L-AA in biosystems. Furthermore, the as-constructed fluorescent probe system was successfully applied to the analyses of Mn(VII) in tap water, Fenhe River water, and medicinal herb samples with satisfactory results. The proposed method is simple and easily accessible, demonstrating the great potential of N,S,P-CNDSac in biosensing, disease diagnosis, cellular labeling, and environmental monitoring.
机译:基于N,S,P编码碳纳米蛋白(N,S,P-CNDSAc)的新型荧光探针非常简单且快速地由酿酒酵母的一步辅助植物溶解,并用于无标记和“开关” - “锰(VII)和L-抗坏血酸的顺序检测(L-AA)。基于内部滤光器效果(IFE),N,S,P-CNDSAc的荧光可以通过Mn(VII)有效地通过Mn(IFE)淬灭,并且由于易于转化Mn(VII)降低状态而在添加L-AA时回收(即L-AA的Mn(IV),Mn(II)和Mn(0))。该探针对Mn(VII)和L-AA的有利选择性和敏感性分别具有50nmol / L和1.2μmol/ L的检测限。同时,已经构建了基于AS制造的N,S,P-CNDSAC的“和”逻辑门。此外,延长了AS提出的荧光探针以检测生物系统中的Mn(VII)和L-AA。此外,以令人满意的结果,成功地应用了AS构建的荧光探针系统在自来水,汾河水和药草样品中的Mn(VII)分析。该方法简单且易于访问,展示了在生物传感,疾病诊断,细胞标记和环境监测中的N,S,P-CNDSAc的巨大潜力。

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