Ibrahim Ahmed A, Tiwari Preeti, Al-Assiri M S, Al-Salami A E, Umar Ahmad, Kumar Rajesh, Kim S H, Ansari Z A, Baskoutas S
Department of Chemistry, Faculty of Science and Arts, Najran University, P.O. Box 1988, Najran 11001, Saudi Arabia.
Promising Centre for Sensors and Electronic Devices (PCSED), Najran University, P.O.Box-1988, Najran 11001, Saudi Arabia.
Materials (Basel). 2017 Jul 13;10(7):795. doi: 10.3390/ma10070795.
Herein, we report a facile synthesis, characterization, and electrochemical sensing application of ZnO nanopeanuts synthesized by a simple aqueous solution process and characterized by various techniques in order to confirm the compositional, morphological, structural, crystalline phase, and optical properties of the synthesized material. The detailed characterizations revealed that the synthesized material possesses a peanut-shaped morphology, dense growth, and a wurtzite hexagonal phase along with good crystal and optical properties. Further, to ascertain the useful properties of the synthesized ZnO nanopeanut as an excellent electron mediator, electrochemical sensors were fabricated based on the form of a screen printed electrode (SPE). Electrochemical and current-voltage characteristics were studied for the determination of picric acid sensing characteristics. The electrochemical sensor fabricated based on the SPE technique exhibited a reproducible and reliable sensitivity of ~1.2 μA/mM (9.23 μA·mM·cm), a lower limit of detection at 7.8 µM, a regression coefficient (²) of 0.94, and good linearity over the 0.0078 mM to 10.0 mM concentration range. In addition, the sensor response was also tested using simple techniques, wherein a sensitivity of 493.64 μA·mM·cm, an experimental Limit of detection (LOD) of 0.125 mM, and a linear dynamic range (LDR) of 1.0 mM-5.0 mM were observed for the fabricated picric acid sensor.
在此,我们报告了通过简单水溶液法合成的ZnO纳米花生的简便合成、表征及电化学传感应用,并通过各种技术对其进行表征,以确认合成材料的组成、形态、结构、晶相和光学性质。详细表征表明,合成材料具有花生形状的形态、致密生长以及纤锌矿六方相,同时具有良好的晶体和光学性质。此外,为了确定合成的ZnO纳米花生作为优异电子介质的有用性质,基于丝网印刷电极(SPE)的形式制备了电化学传感器。研究了电化学和电流-电压特性以测定苦味酸传感特性。基于SPE技术制备的电化学传感器表现出~1.2 μA/mM(9.23 μA·mM·cm)的可重现且可靠的灵敏度、7.8 µM的检测下限、0.94的回归系数(²)以及在0.0078 mM至10.0 mM浓度范围内的良好线性。此外,还使用简单技术测试了传感器响应,其中制备的苦味酸传感器观察到493.64 μA·mM·cm的灵敏度、0.125 mM的实验检测限(LOD)以及1.0 mM - 5.0 mM的线性动态范围(LDR)。