首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Molecule-gated surface chemistry of Pt nanoparticles for constructing activity-controllable nanozymes and a three-in-one sensor
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Molecule-gated surface chemistry of Pt nanoparticles for constructing activity-controllable nanozymes and a three-in-one sensor

机译:Pt纳米颗粒的分子门状表面化学,用于构建可活性可控纳米酶和三合一传感器

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摘要

Herein, a simple strategy for constructing activity-controllable nanozymes is proposed based on the glutathione (GSH)-gated surface chemistry of citrate-capped Pt nanoparticles (PtNPs). PtNPs have been shown to have oxidase-like activity that can effectively catalyze the oxidation of 3,3',5,5'-tertamethylbenzidine (TMB) by O2, resulting in a typical color reaction from colorless to blue. We found that GSH can inhibit the oxidase-like activity of PtNPs as a molecule-gated surface chemistry element, resulting in a dramatic decrease of the oxidation of TMB. The addition of copper ions (Cu~(2+)) could oxidize GSH into glutathione disulfide (GSSG), resulting in the distinct suppression of GSH-modulated PtNP surface chemistry and oxidase-like activity inhibition, which further results in a significant acceleration of TMB oxidation and the obvious recovery of intense blue color. Furthermore, the color-based detection signal associated with the redox of TMB indicator here was found to show good fluorescence and a photothermal effect and exhibit sensitive and selective response toward the proposed molecule-gated surface chemistry and Cu~(2+) target. On the basis of this phenomenon, we successfully constructed a three-in-one sensor for Cu~(2+) with a triple signal readout, colorimetric, photothermal (temperature), and fluorescence, depending on the proposed in situ modulation method for PtNP catalysis. The applicability of the three-in-one sensor was also demonstrated by measuring Cu~(2+) in human serum with a standard addition method, and the results are of satisfactory accuracy as confirmed by ICP-MS measurements.
机译:在此,基于柠檬酸盖PT纳米颗粒(PTNP)的谷胱甘肽(GSH)型表面化学提出了一种构建活性可控纳米酶的简单策略。已经显示PTNP具有氧化酶样活性,可以有效地催化O 2的3,3',5,5'-叔酰甲基苯胺(TMB)的氧化,从而产生从无色到蓝色的典型颜色反应。我们发现GSH可以抑制PTNP的氧化酶样活性作为分子门控表面化学元件,导致TMB氧化的显着降低。铜离子(Cu〜(2+))可以将GSH氧化成谷胱甘肽二硫化物(GSSG),导致GSH调制的PTNP表面化学和氧化酶样活性抑制的明显抑制,这进一步导致了显着的加速度TMB氧化与强烈蓝色的明显恢复。此外,发现与TMB指标的氧化还原相关的基于颜色的检测信号,以显示出良好的荧光和光热效果,并对所提出的分子门控表面化学和Cu〜(2+)靶表示敏感和选择性反应。在这种现象的基础上,我们成功地构建了Cu〜(2+)的三合一传感器,具有三重信号读数,比色,光热)和荧光,取决于PTNP的原位调制方法所提出的催化。还通过用标准添加方法测量人血清中的Cu〜(2+)来证明三合一传感器的适用性,结果具有令人满意的精度,通过ICP-MS测量确认。

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  • 作者单位

    Key Laboratory of Bioelectrochemistry &

    Environmental Analysis of Gansu Province College of Chemistry &

    Chemical Engineering Northwest Normal University Lanzhou 730070 China;

    Key Laboratory of Bioelectrochemistry &

    Environmental Analysis of Gansu Province College of Chemistry &

    Chemical Engineering Northwest Normal University Lanzhou 730070 China;

    School of chemistry &

    Chemical Engineering Lanzhou City University Lanzhou 730070 China;

    Key Laboratory of Bioelectrochemistry &

    Environmental Analysis of Gansu Province College of Chemistry &

    Chemical Engineering Northwest Normal University Lanzhou 730070 China;

    Key Laboratory of Bioelectrochemistry &

    Environmental Analysis of Gansu Province College of Chemistry &

    Chemical Engineering Northwest Normal University Lanzhou 730070 China;

    College of Geography and Environment Science Northwest Normal University Lanzhou 730070 China;

    Key Laboratory of Bioelectrochemistry &

    Environmental Analysis of Gansu Province College of Chemistry &

    Chemical Engineering Northwest Normal University Lanzhou 730070 China;

    Key Laboratory of Bioelectrochemistry &

    Environmental Analysis of Gansu Province College of Chemistry &

    Chemical Engineering Northwest Normal University Lanzhou 730070 China;

    Key Laboratory of Bioelectrochemistry &

    Environmental Analysis of Gansu Province College of Chemistry &

    Chemical Engineering Northwest Normal University Lanzhou 730070 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

    Molecule-gated surface chemistry; Pt nanoparticles for constructing activity-controllable nanozymes; three-in-one sensor;

    机译:分子门状表面化学;Pt纳米颗粒用于构建可活性可控纳米粒子;三合一传感器;

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