Department of Chemistry, Faculty of Sciences and Arts, Najran University, Najran University, P.O. Box 1988, Najran 11001, Saudi Arabia.
Talanta. 2012 May 15;93:257-63. doi: 10.1016/j.talanta.2012.02.030. Epub 2012 Feb 22.
We report here the fabrication of a robust, highly sensitive, reliable and reproducible phenyl hydrazine chemical sensor using Ag-doped ZnO nanoflowers as efficient electron mediators. The Ag-doped ZnO nanoflowers were synthesized by facile hydrothermal process at low-temperature and characterized in detail in terms of their morphological, structural, compositional and optical properties. The detailed morphological and structural characterizations revealed that the synthesized nanostructures were flower-shaped, grown in very high-density, and possessed well-crystalline structure. The chemical composition confirmed the presence of Ag into the lattices of Ag-doped ZnO nanoflowers. High sensitivity of ≈ 557.108 ± 0.012 mAcm(-2)(mol L(-1))(-1) and detection limit of ≈ 5 × 10(-9) mol L(-1) with correlation coefficient (R) of 0.97712 and short response time (10.0 s) were observed for the fabricated chemical sensor towards the detection of phenyl hydrazine by using a simple current-voltage (I-V) technique. Due to high sensitivity and low-detection limit, it can be concluded that Ag-doped ZnO nanoflowers could be an effective candidate for the fabrication of phenyl hydrazine chemical sensors.
我们在此报告了一种使用掺银氧化锌纳米花作为高效电子媒介体来制造坚固、高灵敏、可靠和可重现的苯肼化学传感器。掺银氧化锌纳米花是通过低温下的简便水热法合成的,并详细地对其形貌、结构、组成和光学性质进行了表征。详细的形貌和结构表征表明,所合成的纳米结构为花状,生长密度非常高,具有良好的结晶结构。化学成分证实了掺银氧化锌纳米花的晶格中存在银。通过简单的电流-电压(I-V)技术,所制备的化学传感器对苯肼的检测表现出 ≈ 557.108 ± 0.012 mAcm(-2)(mol L(-1))(-1) 的高灵敏度和 ≈ 5 × 10(-9) mol L(-1)的检测限,相关系数(R)为 0.97712,响应时间短(10.0 s)。由于具有高灵敏度和低检测限,可以得出结论,掺银氧化锌纳米花可以成为制造苯肼化学传感器的有效候选材料。