Analyzing the Suitability of Chromium Doped Iron Oxide Nanoparticles for Creatinine Bio Sensor Applications

Priyadharshini Muthukumaravela, Rajesh Pattulingama, Manikandan Jeganathanb, Hariharan Venkatesanc, Ezhil Inban Manimarand
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Abstract

The present work focused on the synthesis and characterization of Cr (~2, 3 & 5 wt.%) doped Fe 2 O 3 nanoparticles with desired electrochemical property for creatinine bio sensor applications via the extraction of Nyctanthes arbor tristis seed by facile chemical precipitation method. The synthesized samples have dimensions of the order of 0.5 to 0.8 μ m and crystallite size of the prepared samples calculated by Powder XRD analysis using Scherer’s formula. The optical characterization of the prepared nanomaterials showed that the band gap energy of the annealed chromium doped samples were found to be 5.74 eV by varying in intensity by Tauc plot that established well optical nature of the synthesized compound which is also have a good concord with the Powder XRD analysis with its crystalline nature. The FT-IR spectra clearly indicating the complete formation of Fe 2 O 3 by observing corresponding functional groups such as Fe=O and O=O vibrations in their respective wavenumbers. The sensing performance of the prepared samples for creatinine was carried out using electrochemical workstation. Interestingly, the electrochemical analysis exposed the good sensing behaviour of the Cr-doped Fe 2 O 3 nanoparticles which displayed corresponding redox peaks attributed to the reversible Faradaic redox reaction at the electrode surface caused by the pseudo-capacitance nature for α – Fe 2 O 3 nanoparticles as an active material, slightly than the double layer capacitance. Consequently the current outcomes revealed a good sensing behaviour on creatinine for Cr-doped Fe 2 O 3 nanoparticles synthesized by an effortless cost effective green synthesis method.
铬掺杂氧化铁纳米颗粒用于肌酐生物传感器的适用性分析
本文主要研究了用化学沉淀法提取刺草种子,合成并表征了具有理想电化学性能的Cr (~ 2,3 & 5 wt.%)掺杂fe2o3纳米颗粒,用于肌酐生物传感器。合成的样品尺寸为0.5 ~ 0.8 μ m,采用Scherer公式进行粉末XRD分析,计算出样品的晶粒尺寸。对所制备的纳米材料进行光学表征,通过Tauc图的强度变化,发现退火后的铬掺杂样品的带隙能为5.74 eV,这表明所合成的化合物具有良好的光学性质,这与粉末XRD分析的结晶性质也有很好的一致性。FT-IR光谱通过观察相应的官能团,如Fe=O和O=O在各自波数中的振动,清楚地表明fe2o3的完全形成。利用电化学工作站对制备的样品进行了肌酸酐的传感性能测试。有趣的是,电化学分析表明,掺杂cr的fe2o3纳米颗粒具有良好的传感性能,其相应的氧化还原峰是由于α - fe2o3纳米颗粒作为活性材料的赝电容性质在电极表面引起的可逆法拉第氧化还原反应而产生的,略高于双层电容。因此,目前的结果表明,通过一种轻松、经济、高效的绿色合成方法合成的cr掺杂fe2o3纳米颗粒具有良好的肌酸酐传感行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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