Department of Physical Sciences, MacEwan University, Edmonton, AB T5J4S2, Canada.
Department of Chemistry, University of Allahabad, Prayagraj 211 002, India.
Biosensors (Basel). 2022 Nov 10;12(11):1001. doi: 10.3390/bios12111001.
This work presents a multipurpose and multilayered stainless steel microneedle sensor for the in situ redox potential monitoring in food and drink samples, termed MN redox sensor. The MN redox sensor was fabricated by layer-by-layer (LbL) approach. The in-tube multilayer coating comprised carbon nanotubes (CNTs)/cellulose nanocrystals (CNCs) as the first layer, polyaniline (PANI) as the second layer, and the ferrocyanide redox couple as the third layer. Using cyclic voltammetry (CV) as a transduction method, the MN redox sensor showed facile electron transfer for probing both electrical capacitance and redox potential, useful for both analyte specific and bulk quantification of redox species in various food and drink samples. The bulk redox species were quantified based on the anodic/cathodic redox peak shifts (E/E) on the voltammograms resulting from the presence of redox-active species. The MN redox sensor was applied to detect selected redox species including ascorbic acid, HO, and putrescine, with capacitive limits of detection (LOD) of 49.9, 17.8, and 263 ng/mL for each species, respectively. For the bulk determination of redox species, the MN redox sensor displayed LOD of 5.27 × 10, 55.4, and 25.8 ng/mL in ascorbic acid, HO, and putrescine equivalents, respectively. The sensor exhibited reproducibility of ~ 1.8% relative standard deviation (%RSD). The MN redox sensor was successfully employed for the detection of fish spoilage and antioxidant quantification in king mushroom and brewed coffee samples, thereby justifying its potential for food quality and food safety applications. Lastly, the portability, reusability, rapid sampling time, and capability of in situ analysis of food and drink samples makes it amenable for real-time sensing applications.
本工作提出了一种用于原位监测食品和饮料样品中氧化还原电位的多功能多层不锈钢微针传感器,称为 MN 氧化还原传感器。MN 氧化还原传感器是通过层层(LbL)方法制造的。管内多层涂层由碳纳米管(CNTs)/纤维素纳米晶体(CNCs)作为第一层、聚苯胺(PANI)作为第二层和亚铁氰化物氧化还原对作为第三层组成。使用循环伏安法(CV)作为换能方法,MN 氧化还原传感器显示出易于电子转移,可用于探测电容量和氧化还原电位,这对于各种食品和饮料样品中氧化还原物种的分析物特异性和总体定量都很有用。基于伏安图上的氧化还原峰(E/E)的阳极/阴极氧化还原峰位移,可以对总体氧化还原物种进行定量,这是由于存在氧化还原活性物质。MN 氧化还原传感器被应用于检测选定的氧化还原物种,包括抗坏血酸、HO 和腐胺,每种物质的电容检测限(LOD)分别为 49.9、17.8 和 263 ng/mL。对于氧化还原物种的总体测定,MN 氧化还原传感器在抗坏血酸、HO 和腐胺当量中分别显示出 5.27×10、55.4 和 25.8 ng/mL 的 LOD。传感器显示出约 1.8%的相对标准偏差(%RSD)的重现性。MN 氧化还原传感器成功地用于检测鱼类腐败和蘑菇和酿造咖啡样品中的抗氧化剂定量,从而证明了其在食品质量和食品安全应用中的潜力。最后,其便携性、可重复使用性、快速采样时间和原位分析食品和饮料样品的能力使其适用于实时传感应用。