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A highly sensitive colorimetric sensor for Hg 2+ detection based on the oxidative enzyme mimics-like activity of hierarchical porous carbon@chitosan-modified silver nanoparticles

机译:用于HG 2 + 检测,基于氧化酶的等级多孔碳的氧化酶的活性,高敏感的比色感传感器。壳聚糖改性银纳米粒子

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In this paper, DMC was prepared via carbonization in nitrogen with plexiglass as the template and sucrose as the carbon source. The hierarchical porous carbon (DHPC) was prepared by treating DMC with potassium hydroxide. The DHPC was loaded on chitosan to prepare DHPC@CS, which was then doped into nanosilver via the one-pot process to prepare DHPC@CS-AgNPs. The morphology of DHPC@CS-AgNPs was characterized using the Scanning Electron Microscope (SEM) and the Transmission Electron Microscope (TEM). In the presence of Hg2+, DHPC@CS-AgNPs will catalyze the oxidation of TMB, resulting in an observable change of color, so a rapid, sensitive and highly selective method could be established to detect trace Hg2+colorimetric sensors. The conditions of the TMB color reaction, characteristics of the Hg2+-DHPC@CS-AgNPs oxidized enzyme mimics and their color reaction characteristics were studied. Under the optimized conditions, coloration could not be catalyzed in the DHPC@CS-AgNPs-TMB system, but with the addition of the mercury ions, the catalytic activity was enhanced and the oxidized enzyme mimic activity was observed. In the Hg2+-DHPC@CS-AgNPs-TMB system, when TMB was used as a substrate, Km?=?0.0165?mM, and Vmax?=?4.6512?×?10?8?M·s?1. Under the optimized conditions, the linear range of mercury ion was determined to be 1?×?10?8–1?×?10?6?mol·L?1using the above method, the linear relationship was r?=?0.99753, the detection limit (S/N?=?3) was 7?×?10?9?mol·L?1, and the recoveries of spiked water sample and fish sample ranged from 84.4% to 103%.
机译:在本文中,通过氮气中的碳化制备DMC,其具有玻术贷款作为模板和蔗糖作为碳源。通过用氢氧化钾处理DMC制备分层多孔碳(DHPC)。将DHPC装载在壳聚糖上以制备DHPC @ Cs,然后通过单罐方法掺杂到纳米梭菌中以制备DHPC-AGNP。使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)表征DHPC @ CS-AGNP的形态。在HG2 +的存在下,DHPC @ CS-AGNP将催化TMB的氧化,导致可观察的颜色变化,因此可以建立快速,灵敏和高度选择的方法来检测迹线HG2 +比色传感器。研究了TMB颜色反应的条件,研究了HG2 + -DHPC氧化酶模拟的HG2 + -DHPC氧化酶模拟物及其颜色反应特性。在优化的条件下,在DHPC @ CS-AgNPS-TMB系统中不能催化着色,但随着汞离子的添加​​,催化活性得到提高,观察到氧化酶模拟活性。在HG2 + -DHPC @ CS-AGNPS-TMB系统中,当TMB用作底物时,KM?=?0.0165?mm,和vmax?= 4.6512?×10?8?M·S?1。在优化的条件下,确定汞离子的线性范围为1?×10?8-1?×10?6?6?Mol·L?1USING上述方法,线性关系是R?=?0.99753,检测极限(S / N?= 3)为7?×10?9?Mol·L?1,并掺入水样和鱼样的回收率范围为84.4%至103%。

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