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Enhanced Thermometric Sensor for Arsenate Analysis Based on Dual Temperature Readout Signaling Strategy

机译:基于双温读数信号策略的增强型温度传感器

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摘要

New methods for portable detection of arsenate are still in urgent need. Herein, we explored a simple but sensitive thermometric strategy for arsenate determination without complex instruments and skilled technicians. Cobalt oxyhydroxide (CoOOH) nanoflakes, can ingeniously decompose hydrogen peroxide into oxygen in a sealed reaction vessel, accompanied by marked pressure and significant temperature increase due to the exothermic reaction effect (Delta H = -98.2 kJ/mol). The increased pressure then compelled a certain amount of H2O overflowing from the drainage device into another vessel, leading to a significant temperature decrease due to the preloaded ammonium nitrate (NH4NO3) and its good dissolution endothermic effect (Delta H = 25.4 kJ/mol). In the presence of arsenate, the catalytic activity of CoOOH nanoflakes for H2O2 decomposition was inhibited dramatically, resulting in an obvious decrease of the pressure, weighting water and temperature response. The two temperature responses with increasing and decreasing feature were easily measured through a common thermometer, and exhibited an effective signaling amplification via coupling both "signal-on" and "signal-off" temperature readout elements. The obtained dual superimposing temperature readout exhibits a good linear with the concentration of arsenate with a lower detection limit (51 nM, 3.8 ppb). Compared to the inductively coupled plasma mass spectrometry, this enhanced thermometric strategy provides a simple, rapid, convenient, low cost, and portable platform for sensing arsenate in real environmental water.
机译:砷酸盐的便携式检测方法仍在迫切需要。在此,我们探讨了在没有复杂的仪器和技术人员的情况下进行简单但敏感的温度策略。氧化钴(CoOOH)纳米蛋白(CoOOH)纳米薄饼可以在密封的反应容器中巧妙地将过氧化氢分解成氧,伴随着显着的压力和由于放热反应效果而显着的温度升高(Delta H = -98.2 kJ / mol)。然后,增加的压力使得从排水装置溢出的一定量的H 2 O溢出到另一个容器中,导致预加载的硝酸铵(NH 4 NO 3)和其良好的溶解吸热作用(Delta H = 25.4kJ / mol)显着降低。在砷酸盐存在下,显着抑制了H2O2分解的CoOH纳米薄膜的催化活性,导致压力,加权水和温度响应明显降低。通过公共温度计容易地测量随着增加和降低的特征的两个温度响应,并通过耦合“信号上”和“信号关”温度读出元件来表现出有效的信令放大。获得的双叠加温度读数具有良好的线性,其浓度具有较低的检测极限(51nm,3.8ppb)。与电感耦合等离子体质谱相比,这种增强的温度策略提供了一种简单,快速,方便,低成本,便携式平台,用于在真正的环境水中传感砷。

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  • 来源
    《Analytical chemistry》 |2020年第6期|共9页
  • 作者单位

    Northwest Normal Univ Coll Chem &

    Chem Engn Key Lab Bioelectrochem &

    Environm Anal Gansu Prov Lanzhou 730070 Peoples R China;

    Northwest Normal Univ Coll Chem &

    Chem Engn Key Lab Bioelectrochem &

    Environm Anal Gansu Prov Lanzhou 730070 Peoples R China;

    Lanzhou City Univ Sch Chem &

    Environm Engn Lanzhou 730070 Peoples R China;

    Northwest Normal Univ Coll Chem &

    Chem Engn Key Lab Bioelectrochem &

    Environm Anal Gansu Prov Lanzhou 730070 Peoples R China;

    Lanzhou Univ Lab Appl Organ Chem Lanzhou 730000 Peoples R China;

    Northwest Normal Univ Coll Chem &

    Chem Engn Key Lab Bioelectrochem &

    Environm Anal Gansu Prov Lanzhou 730070 Peoples R China;

    Northwest Normal Univ Coll Chem &

    Chem Engn Key Lab Bioelectrochem &

    Environm Anal Gansu Prov Lanzhou 730070 Peoples R China;

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