Morosanova Maria A, Morosanova Elena I
Analytical Chemistry Division, Chemistry Department, Lomonosov Moscow State University, Moscow, Russia.
Chem Cent J. 2017 Jan 3;11:3. doi: 10.1186/s13065-016-0233-5. eCollection 2017.
Ascorbic acid is one of the most important vitamins to monitor in dietary sources (juices and vitamins) and biological liquids.
Silica and silica-titania xerogels doped with Mo,P-heteropoly compounds (HPC) have been synthesized varying titanium(IV) and HPC content in sol. Their surface area and porosity have been studied with nitrogen adsorption and scanning electron microscopy, their elemental composition has been studied with energy-dispersive X-ray analysis. The redox properties of the sensor material with sufficient porosity and maximal HPC content have been studied with potentiometry and solid phase spectrophotometry and it has been used for solid phase spectrophotometric determination of ascorbic acid. The proposed method is characterized by good selectivity, simple probe pretreatment and broad analytical range (2-200 mg/L, LOD 0.7 mg/L) and has been applied to the analysis of fruit juices, vitamin tablets, and synthetic urine.
New sensor material has been used for simple and selective solid phase spectrophotometric procedure of ascorbic acid determination in fruit juices, vitamin tablets, and synthetic urine.Graphical abstractWe synthesized several silica-titania xerogels doped with Mo,P-heteropoly compounds, studied their properties, and designed the sensor material for solid phase spectrophotometric determination of ascorbic acid in fruit juices, pharmaceuticals, and synthetic urine.
抗坏血酸是在饮食来源(果汁和维生素)及生物液体中需要监测的最重要的维生素之一。
合成了掺杂钼、磷杂多化合物(HPC)的二氧化硅和二氧化硅 - 二氧化钛干凝胶,溶胶中钛(IV)和HPC含量各不相同。通过氮气吸附和扫描电子显微镜研究了它们的表面积和孔隙率,通过能量色散X射线分析研究了它们的元素组成。用电位分析法和固相分光光度法研究了具有足够孔隙率和最大HPC含量的传感材料的氧化还原性质,并将其用于抗坏血酸的固相分光光度测定。所提出的方法具有选择性好、探针预处理简单和分析范围宽(2 - 200mg/L,检测限0.7mg/L)的特点,已应用于果汁、维生素片和合成尿液的分析。
新型传感材料已用于果汁、维生素片和合成尿液中抗坏血酸的简单且选择性的固相分光光度测定方法。图形摘要我们合成了几种掺杂钼、磷杂多化合物的二氧化硅 - 二氧化钛干凝胶,研究了它们的性质,并设计了用于果汁、药品和合成尿液中抗坏血酸固相分光光度测定的传感材料。