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RGO/Ni2O3 Heterojunction-Based Reusable, Flexible Device for Cr(VI) Ion Detection in Water

机译:基于rgo / Ni2O3的异质结的可重复使用,柔性装置,用于水中的Cr(vi)离子检测

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Rapid industrialization has compelled the use of water quality monitors for maintaining drinking water standards. The present article demonstrates RGO/Ni 2 O 3 hierarchical nanostructures as a sensing layer for flexible sensors to detect Cr(VI) ions in water. The device showed a maximum response of 6.61 times for 50 ppm of Cr(VI) ions (response time ~3.24 s with a calculated limit of detection (LOD) of ~0.494 ppb). The sensors were highly repeatable (four identical devices were tested) and reusable. The sensor was observed to degrade under repeated compression due to possible rearrangement of grain boundaries. An anomaly in the sensor response characteristics with increasing Cr(VI) ion concentration was observed and explained mathematically on the basis of kinetics studies based on batch adsorption experiments. The studies revealed that the adsorption was governed by only surface defects at lower concentrations (< 1 ppm), while at higher concentrations (>1 ppm) a synergistic activity of both the surface heterogeneity and the effect of adsorbed ions was observed providing a nonlinear response characteristics. To explain the effect of compression on the sensing response, a “stress-assisted sensing model” was proposed which explained the unexpected behavior of the device. The device demonstrated high specificity toward Cr(VI) ions over other heavy metal cations commonly found in drinking water. Thus, the RGO/Ni 2 O 3 nanostructured sensing layer demonstrated promising sensing performance as flexible micro sensors for futuristic electronics.
机译:快速的工业化迫使使用水质监测器来维持饮用水标准。本文演示了RGO / Ni 2 o 3 分层纳米结构作为柔性传感器的传感层,以检测水中Cr(VI)离子。该装置显示出50ppm的Cr(VI)离子的最大响应为6.61倍(响应时间〜3.24s,具有〜0.494 ppb的检测极限)。传感器是高度可重复的(测试四个相同的设备)和可重复使用。由于可能的晶界重新排列,观察到传感器以在重复压缩下降解。在基于批量吸附实验的基础上,在数学上观察和在数学上观察到具有增加的Cr(VI)离子浓度的传感器响应特性的异常。这些研究表明,吸附仅通过较低浓度(<1ppm)的表面缺陷来治理,而在较高浓度(> 1ppm)下观察到表面异质性和吸附离子的效果的协同活性提供非线性反应特征。为了解释压缩对传感响应的影响,提出了“应力辅助感测模型”,其解释了设备的意外行为。该器件对饮用水中常见的其他重金属阳离子的Cr(vi)离子表现出高特异性。因此,RGO / Ni 2 o 3 < / sub>纳米结构传感层表明了作为未来派电子的柔性微传感器的有希望的传感性能。

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