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Green material: ecological importance of imperative and sensitive chemi-sensor based on Ag/Ag2O3/ZnO composite nanorods

机译:绿色材料:基于Ag / Ag2O3 / ZnO复合纳米棒的强制性和灵敏化学传感器的生态重要性

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摘要

In this report, we illustrate a simple, easy, and low-temperature growth of Ag/Ag2O3/ZnO composite nanorods with high purity and crystallinity. The composite nanorods were structurally characterized by field emission scanning electron microscopy, X-ray powder diffraction, Fourier transform infrared spectroscopy, and X-ray photoelectron spectroscopy which confirmed that synthesized product have rod-like morphology having an average cross section of approximately 300 nm. Nanorods are made of silver, silver oxide, and zinc oxide and are optically active having absorption band at 375 nm. The composite nanorods exhibited high sensitivity (1.5823 μA.cm−2.mM−1) and lower limit of detection (0.5 μM) when applied for the recognition of phenyl hydrazine utilizing I-V technique. Thus, Ag/Ag2O3/ZnO composite nanorods can be utilized as a redox mediator for the development of highly proficient phenyl hydrazine sensor.
机译:在此报告中,我们说明了具有高纯度和结晶度的Ag / Ag2O3 / ZnO复合纳米棒的简单,轻松和低温生长。通过场发射扫描电子显微镜,X射线粉末衍射,傅立叶变换红外光谱和X射线光电子能谱对复合纳米棒进行结构表征,这证实了合成产物具有平均横截面约为300nm的棒状形态。纳米棒由银,氧化银和氧化锌制成,具有在375 nm的吸收带,具有光学活性。当用于利用苯基肼的识别时,复合纳米棒表现出高灵敏度(1.5823μA.cm -2 .mM -1 )和检测下限(0.5μM)。 IV技术。因此,Ag / Ag2O3 / ZnO复合纳米棒可作为氧化还原介体,用于开发高效的苯基肼传感器。

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