Department of Chemistry, Faculty of Science, Tanta University, Egypt.
Department of Electrical and Electronic Information Engineering, Toyohashi University of Technology, Japan.
Mater Sci Eng C Mater Biol Appl. 2017 Nov 1;80:494-501. doi: 10.1016/j.msec.2017.04.101. Epub 2017 Apr 18.
A sensitive conductive nanocomposite sensor consisting of chitosan, zinc oxide nanoparticles, and polypyrrole was developed. The sensor was prepared by oxidative polymerization of pyrrole using (NH)SO as the oxidant followed by mixing a Chitosan-Zinc oxide composite with a different content of Chitosan. The morphology and surface area of the nanocomposites were changed by changing the percentage of chitosan. The newly developed nanocomposites also showed a significant improvement in electrical conductivity as mentioned from the cyclic voltammetry measurements of the K[Fe(CN)] sample. A square-wave adsorptive anodic stripping voltammetry method successfully measured Isoxsuprine hydrochloride using different types of nanocomposite modified CPEs and showed a large enhancement of stripping peak current compared to bare CPE. Consequently, the proposed sensors proved to have a promissing feature for applications in biosensors.
研制了一种由壳聚糖、氧化锌纳米粒子和聚吡咯组成的灵敏导电纳米复合传感器。该传感器通过使用(NH4)2S2O8作为氧化剂氧化聚合吡咯,然后将壳聚糖-氧化锌复合材料与不同含量的壳聚糖混合来制备。通过改变壳聚糖的百分比,改变了纳米复合材料的形态和表面积。从 K[Fe(CN)6]样品的循环伏安测量可知,新开发的纳米复合材料的电导率也有显著提高。使用不同类型的纳米复合材料修饰的 CPE,成功地采用方波吸附阳极溶出伏安法测量了盐酸异克舒令,并与裸 CPE 相比,溶出峰电流有了很大的增强。因此,所提出的传感器在生物传感器中的应用具有很大的潜力。