E Prabisha K, K Neena P, Ankitha Menon, Rasheed P Abdul, Suneesh P V, Satheesh Babu T G
Department of Chemistry, Amrita School of Physical Sciences Coimbatore, Amrita Vishwa Vidyapeetham, Coimbatore, 641112, India.
Amrita Biosensor Research Laboratory, Amrita School of Engineering Coimbatore, Amrita Vishwa Vidyapeetham, Coimbatore, 641112, India.
Sci Rep. 2025 Jan 11;15(1):1749. doi: 10.1038/s41598-025-85748-y.
Glucose sensing remains a crucial need as diabetes is a worldwide concern. This work reports the application of NbCT-selenium nanoparticle composite material for the nonenzymatic sensing of glucose. The surface morphology of the synthesized composite was analyzed using various microscopic techniques like scanning electron microscopy, transmission electron microscopy, and its structural properties were analyzed using diffraction and spectroscopic methods. A gold disc electrode was modified using the nanocomposite and tested for glucose in an alkaline medium. The sensing was based on the oxidation of glucose on the catalytic surface. The glucose was quantified amperometrically at a significantly lower overpotential of 0.16 V. The sensor showed a good detection range from 2 to 30 mM with a sensitivity of 4.15 µA mM cm and a detection limit of 1.1 mM.
由于糖尿病是一个全球性问题,葡萄糖传感仍然是一项至关重要的需求。这项工作报道了铌碳化物-硒纳米颗粒复合材料在葡萄糖非酶传感中的应用。使用扫描电子显微镜、透射电子显微镜等各种微观技术分析了合成复合材料的表面形态,并使用衍射和光谱方法分析了其结构特性。使用该纳米复合材料修饰金盘电极,并在碱性介质中对葡萄糖进行测试。传感基于葡萄糖在催化表面的氧化。通过安培法在0.16 V的显著更低过电位下对葡萄糖进行定量。该传感器显示出2至30 mM的良好检测范围,灵敏度为4.15 μA mM cm,检测限为1.1 mM。