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首页> 外文期刊>Biomaterials Science >Gold/SH-functionalized nanographene oxide/polyamidamine/poly(ethylene glycol) nanocomposites for enhanced non-enzymatic hydrogen peroxide detection
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Gold/SH-functionalized nanographene oxide/polyamidamine/poly(ethylene glycol) nanocomposites for enhanced non-enzymatic hydrogen peroxide detection

机译:金/ SH官能化纳米氧化物/聚酰胺胺/聚(乙二醇)纳米复合材料,用于增强非酶氢过氧化物检测

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摘要

Hydrogen peroxide (H2O2) is an important mediator in biological medicine, disease diagnosis and environmental analyses and therefore it is essential to develop a detection approach for H2O2 in physical environments. Herein, we designed and prepared a series of AuNP-containing nanocomposites (AuNPs@NGO-PEG, AuNPs@G1-PAMAM-NGO-PEG and AuNPs@G3-PAMAM-NGO-PEG) for enhanced non-enzymatic H2O2 detection. We firstly demonstrated functionalized nanographene oxide (NGO) based materials, which combined advantages of biocompatible poly(ethylene glycol) (PEG), hyperbranched polyamidamine (PAMAM) dendrimer and thiol active site, as compatible platforms. Gold nanoparticles (AuNPs) were then aptly in situ grown on these functionalized NGO based materials via the reduction of HAuCl4 under mild conditions, i.e. AuNPs@NGO-PEG, AuNPs@G1-PAMAM-NGO-PEG and AuNPs@G3-PAMAM-NGO-PEG nanocomposites, which possess stable and uniform AuNPs standing on the functionalized NGO sheets. For H2O2 detection, these nanocomposites were cast on a glassy carbon electrode (GCE) conveniently, i.e. GCE/AuNPs@NGO-PEG, GCE/AuNPs@G1-PAMAM-NGO-PEG and GCE/AuNPs@G3-PAMAM-NGO-PEG. It is evident that these GCEs could be applied as efficient non-enzymatic H2O2 detectors resulting from the corresponding cyclic voltammetric curves and typical ready-state amperometric curves. GCE/AuNPs@G1-PAMAM-NGO-PEG exhibited the fastest electron transfer rate among these modified GCEs. We envisage that these GCEs could provide efficient sensors for H2O2 detection and a new strategy for sensor design.
机译:过氧化氢(H2O2)是生物医学,疾病诊断和环境分析中的重要介体,因此必须在物理环境中为H2O2开发一种检测方法。在此,我们设计并制备了一系列含AUNP的纳米复合材料(AUNPS @ NGO-PEG,AUNPS @ G1-PAMAM-NGO-NGO-PEG和AUNPS @ G3-PAMAM-NGO-NGO-PEG),用于增强非酶促H2O2检测。我们首先展示了官能化的纳米氧化物氧化物(NGO)的材料,其基于生物相容性聚(乙二醇)(PEG),超支化聚酰胺(PAMAM)树枝状聚合物和硫醇活性位点的优点,作为兼容平台。然后在这些官能化NGO基础上恰当地生长金纳米颗粒(AUNP)通过在温和条件下的Haucl4减少,即AUNPS @ NGO-PEG,AUNPS @ G1-PAMAM-NGO-PEG和AUNPS @ G3-Pamam-NGO -PEG纳米复合材料,其具有稳定且均匀的AUNPS站在功能化的NGO片上。对于H 2 O 2检测,将这些纳米复合材料方便地在玻璃状碳电极(GCE)上,即GCE / AUNPS @ NGO-PEG,GCE / AUNPS @ G1-PAMAM-NGO-PEG和GCE / AUNPS @ G3-PAMAM-NGO-PEG 。很明显,这些转台可以应用于由相应的循环伏安曲线和典型的现成状态曲线产生的有效的非酶促H2O2检测器。 GCE / AUNPS @ G1-PAMAM-NGO-PEG在这些改进的GCE中表现出最快的电子转移率。我们设想这些讲台可以为H2O2检测提供有效的传感器,以及传感器设计的新策略。

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  • 来源
    《Biomaterials Science 》 |2020年第21期| 共8页
  • 作者单位

    Shanghai Xuhui Dist Dent Ctr Dept Stomatol 500 Fenglin Rd Shanghai 200032 Peoples R China;

    Shanghai Xuhui Dist Dent Ctr Dept Stomatol 500 Fenglin Rd Shanghai 200032 Peoples R China;

    Shanghai Xuhui Dist Dent Ctr Dept Stomatol 500 Fenglin Rd Shanghai 200032 Peoples R China;

    Chinese Acad Sci State Key Lab High Performance Ceram &

    Superfine Shanghai Inst Ceram 1295 Dingxi Rd Shanghai 200050 Peoples R China;

    Chinese Acad Sci State Key Lab High Performance Ceram &

    Superfine Shanghai Inst Ceram 1295 Dingxi Rd Shanghai 200050 Peoples R China;

    Chinese Acad Sci Shanghai Inst Organ Chem Univ Chinese Acad Sci Ctr Excellence Mol Synth Key Lab Synth &

    Self Ass 345 Lingling Rd Shanghai 200032 Peoples R China;

    Chinese Acad Sci Shanghai Inst Organ Chem Univ Chinese Acad Sci Ctr Excellence Mol Synth Key Lab Synth &

    Self Ass 345 Lingling Rd Shanghai 200032 Peoples R China;

    Shanghai Xuhui Dist Dent Ctr Dept Stomatol 500 Fenglin Rd Shanghai 200032 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
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