二水磷酸二钙在改性二氧化硅表面的非均相成核。

Medicinski vjesnik (Osijek, Croatia) Pub Date : 2010-01-01
Carrie Miller, Ljepša Komunjer, Vladimir Hlady
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引用次数: 0

摘要

研究了二水磷酸二钙CaHPO4•2H2O (DCPD)在未处理的平面熔融二氧化硅和三种改性二氧化硅表面(十八烷基硅基(OTS)改性二氧化硅、人血清白蛋白处理的OTS二氧化硅和紫外氧化3-巯基丙基三乙氧基硅基(MTS)改性二氧化硅)上的非均相成核。钙磷酸盐溶液相对于DCPD的过饱和比保持在~10以下。在过饱和溶液与衬底表面初次接触24小时和一周后,使用明光场和反射干涉对比显微镜观察成核晶体。在白蛋白处理的ots -二氧化硅上没有成核的DCPD晶体。无论成核基质的性质如何,在其他改性二氧化硅表面形成的大多数DCDP晶体在形态上似乎是相似的。反射干涉对比显微镜提供了一个证据,证明这些衬底上的大多数晶体不会与衬底表面形成延伸的接触。图像显示,DCPD晶体与MTS改性二氧化硅表面的接触面最大。在ots处理和未处理的二氧化硅表面上成核的晶体只有很少或没有发育良好的接触面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Heterogeneous Nucleation of Dicalcium Phosphate Dihydrate on Modified Silica Surfaces.

Heterogeneous Nucleation of Dicalcium Phosphate Dihydrate on Modified Silica Surfaces.

Heterogeneous Nucleation of Dicalcium Phosphate Dihydrate on Modified Silica Surfaces.

Heterogeneous Nucleation of Dicalcium Phosphate Dihydrate on Modified Silica Surfaces.

Heterogeneous nucleation of dicalcium phosphate dihydrate, CaHPO4•2H2O (DCPD) was studied on untreated planar fused silica and on three modified silica surfaces: octadecylsilyl (OTS) modified silica, human serum albumin treated OTS silica, and UV-oxidized 3-mercaptopropyltriethoxysilyl (MTS) modified silica. The supersaturation ratio of calcium and phosphate solution with respect to DCPD was kept below ~10. The nucleated crystals were observed 24 hours and one week after initial contact between supersaturated solutions and substrate surfaces using bright field and reflectance interference contrast microscopy. No DCPD crystals nucleated on albumin-treated OTS-silica. Majority of the DCDP crystals formed on the other modified silica surfaces appeared to be morphologically similar irrespective of the nature of nucleating substrate. Reflectance interference contrast microscopy provided a proof that the majority of the crystals on these substrates do not develop an extended contact with the substrate surface. The images showed that the most extended contact planes were between the DCPD crystals and MTS modified silica surface. The crystals nucleated on OTS-treated and untreated silica surfaces showed only few or none well-developed contact planes.

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