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Adsorption Behavior of Sodium Inositol Hexaphosphate on the Surface of Hydroxyapatite

机译:碘磷酸盐表面碘醇六磷酸钠的吸附行为

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We have previously developed hydroxyapatite (HAp) cement based on the chelate-setting mechanism of sodium inositol hexaphosphate (IP6), in which HAp powder was prepared by surface-modification with IP6 after ball-milling of the HAp powder (conventional process). Meanwhile, we have recently established novel powder preparation process (modified process). In the present study, the adsorption behavior of IP6 on the surface of HAp at both the processes was circumstantially examined to clarify the chelating mechanism of IP6. The adsorbed amount of IP6 increased with the TP6 concentration in both the processes;;however, the adsorbed amount of IP6 at the modified process was lower than that at the conventional process. X-ray photoelectron spectroscopic study revealed that the IP6 adsorbed on the surface of HAp powders. The degree in dispersion of the HAp particles at the modified process was higher than that at conventional process. Furthermore, the elution of IP6 from the powders prepared at the novel process was lower than that of the powders at the conventional process.
机译:我们以前已经开发了一种基于六磷酸肌醇(IP6)钠的螯合设定机构,在其中的羟基磷灰石粉末(常规处理)的球磨后,用IP6制备表面改性磷灰石粉末的羟基磷灰石(HAP)的水泥。同时,我们最近建立了新型粉末制备过程(修饰过程)。在本研究中,间接检查了对处理的HAP表面上的IP6的吸附行为,以阐明IP6的螯合机理。吸附量的IP6在过程中增加了TP6浓度;但是,改性过程中的IP6的吸附量低于常规方法的吸附量。 X射线光电子体光谱研究表明,吸附在Hap粉末表面上的IP6。 HAP颗粒在改性过程中分散的程度高于常规方法的程度。此外,从新方法制备的粉末中的IP6的洗脱低于常规方法的粉末的粉末。

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