Skwarek E, Janusz W, Sternik D
Faculty of Chemistry, Maria Curie-Sklodowska University, Maria Curie-Sklodowska Sq. 5, 20-031 Lublin, Poland.
J Radioanal Nucl Chem. 2014;299(3):2027-2036. doi: 10.1007/s10967-013-2825-z. Epub 2013 Nov 22.
The specific adsorption of citric acid ions at hydroxyapatite interface was investigated by the means of radioisotope method (C) as a function of citric acid ions concentration, NaCl concentration and pH. Application of the hydroxyapatite has become wide in the biomaterial field as the Ca(OH)(PO) possess biocompatibility with human hard tissue. Hydroxyapatite was synthesized using three different methods. The physical properties of the resulting powder were characterized by DTA/TG, XRD, AFM and SEM microscopy. Physicochemical qualities characterizing the electrical double layer of the hydroxyapatite/NaCl solution interface were determined. The zeta potential and the adsorption of citric acid molecule were studied as a function of pH. The point of zero charge and the isoelectric point of samples were determined. Electrical double layer parameters of hydroxyapatite/NaCl interface are influenced by a synthesis method. The points pH and pH for sample 1 are pH 7.5 and pH 3; for sample 2 pH 7.05 and pH 3, for smaple 3 pH 6.7 and pH 3. Temperature has weak influence both on pure substance and with citric acid adsorbed, as derivatographic analysis has shown, and characterization of hydroxyapatite structure may be carried out by this thermal analysis. Two phenomena are responsible for citric acid adsorption: phosphate group's replacement at hydroxyapatite surface by citric ions parallel to intraspherical complexes formation.
采用放射性同位素法(C)研究了柠檬酸根离子在羟基磷灰石界面的特异性吸附,该吸附是柠檬酸根离子浓度、NaCl浓度和pH值的函数。由于Ca(OH)(PO)与人硬组织具有生物相容性,羟基磷灰石在生物材料领域的应用已变得广泛。采用三种不同方法合成了羟基磷灰石。通过差示热分析/热重分析、X射线衍射、原子力显微镜和扫描电子显微镜对所得粉末的物理性质进行了表征。测定了表征羟基磷灰石/NaCl溶液界面双电层的物理化学性质。研究了ζ电位和柠檬酸分子的吸附随pH值的变化。测定了样品的零电荷点和等电点。羟基磷灰石/NaCl界面的双电层参数受合成方法的影响。样品1的pH点和pH值分别为7.5和3;样品2为7.05和3,样品3为6.7和3。如差示热分析所示,温度对纯物质和吸附柠檬酸的物质都有微弱影响,并且可以通过这种热分析对羟基磷灰石结构进行表征。柠檬酸吸附有两种现象:柠檬酸根离子在羟基磷灰石表面取代磷酸基团,同时形成球内络合物。