Morosanova Maria A, Samodelov Zahar V, Morosanova Elena I
Analytical Chemistry Division, Chemistry Department, Lomonosov Moscow State University, Moscow 119234, Russia.
Sensors (Basel). 2018 Mar 15;18(3):864. doi: 10.3390/s18030864.
The interaction of silica-titania xerogel with triphenylmethane dyes (pyrocatechol violet, chrome azurol S, eriochrome cyanine R) has been investigated to create a new sensor material for solid phase spectrophotometric determination of food oxalates. The complex forming reaction between xerogel incorporated titanium(IV) and triphenylmethane dyes has been studied; half-reaction periods, complex composition, equilibrium constants, and xerogel sorption capacity have been calculated for each dye. Eriochrome cyanine R (ECR) is characterized by the shortest half-reaction period, the smallest equilibrium constant, and the greatest capacity; it has been chosen for the sensor material construction because titanium(IV)-ECR complex is formed faster and can be destroyed easier than other studied complexes. The interaction of this sensor material with oxalates has been described: the presence of oxalates causes sensor material discoloration and the absorbance is used as analytical signal. The analytical range is 35-900 mg/L (LOD 10.5 mg/L, = 7). High concentrations of interfering inorganic anions, organic acids, and sucrose did not affect oxalate determination. Proposed solid phase spectrophotometric procedure has been successfully applied for the determination of oxalates in food samples (sorrel, spinach, parsley, ginger, and black pepper) and the results are in good agreement with HPLC oxalate determination.
研究了二氧化硅 - 二氧化钛干凝胶与三苯甲烷染料(邻苯二酚紫、铬天青S、铬变青R)的相互作用,以制备用于固相分光光度法测定食品中草酸盐的新型传感材料。研究了掺入钛(IV)的干凝胶与三苯甲烷染料之间的络合形成反应;计算了每种染料的半反应期、络合物组成、平衡常数和干凝胶吸附容量。铬变青R(ECR)的特点是半反应期最短、平衡常数最小且容量最大;它被选用于构建传感材料,因为钛(IV)-ECR络合物的形成速度比其他研究的络合物更快,且比其他络合物更容易被破坏。描述了这种传感材料与草酸盐的相互作用:草酸盐的存在会导致传感材料变色,吸光度用作分析信号。分析范围为35 - 900 mg/L(检测限10.5 mg/L,n = 7)。高浓度的干扰无机阴离子、有机酸和蔗糖不影响草酸盐的测定。所提出的固相分光光度法已成功应用于食品样品(酢浆草、菠菜、欧芹、生姜和黑胡椒)中草酸盐的测定,结果与高效液相色谱法测定草酸盐的结果高度一致。