Analytical Chemistry Department, Faculty of Sciences, University of Burgos, Pza. Misael Bañuelos S/n, 09001, Burgos, Spain.
Analytical Chemistry Department, Faculty of Sciences, University of Burgos, Pza. Misael Bañuelos S/n, 09001, Burgos, Spain.
Talanta. 2023 Aug 1;260:124583. doi: 10.1016/j.talanta.2023.124583. Epub 2023 Apr 23.
The formation of thiols has a notable and detrimental sensory impact, especially in the aroma of bottled wines. Their detection in wine is of great interest to avoid important economic and image losses for wineries. This work reports the study of different cobalt phthalocyanine/nanomaterials-based sensors for the headspace detection of volatile thiols. The amperometric procedure based on the use of carbon sensors simply modified with cobalt phthalocyanine showed the best performance. Under the optimum conditions of applied potential, +0.8 V, and pH of the supporting electrolyte, 2.6, this procedure shows a reproducibility of 7% (n = 5) in terms of relative standard deviation of the slopes of calibration curves built in the concentration range from 9.9 to 82.6 μg/L, a capability of detection of 12.5 μg/L and a decision limit of 6.5 μg/L (α = β = 0.05). The use of this electrocatalytic material and the headspace measurements reduce interferents, increasing the selectivity of the procedure, which allows the easy and successful quantification of ethanethiol in white and red wines.
硫醇的形成具有显著的、有害的感官影响,特别是在瓶装葡萄酒的香气中。检测葡萄酒中的硫醇对于避免酒庄遭受重大的经济和形象损失非常重要。本工作报道了不同的基于钴酞菁/纳米材料的传感器用于顶空检测挥发性硫醇的研究。基于使用简单修饰有钴酞菁的碳传感器的电流测定程序表现出最佳性能。在最佳的实验条件下,施加电位为+0.8 V,支持电解质的 pH 值为 2.6,该程序在 9.9 至 82.6μg/L 的浓度范围内构建校准曲线的斜率的重现性为 7%(n=5),检测限为 12.5μg/L,决策限为 6.5μg/L(α=β=0.05)。这种电催化材料的使用和顶空测量减少了干扰物,提高了程序的选择性,使得在白葡萄酒和红葡萄酒中轻松、成功地定量乙硫醇成为可能。