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在酸性pH值条件下通过超声浴在钛表面制备纳米晶磷酸钙涂层及其特性

Preparation and characteristics of nano-grained calcium phosphate coatings on titanium from ultrasonated bath at acidic pH.

作者信息

Narayanan R, Kwon Tae-Yub, Kim Kyo-Han

机构信息

Department of Dental Biomaterials, College of Dentistry, Institute for Biomaterials Research and Development, KNU School of Dentistry BK21, Kyungpook National University, Daegu, Korea.

出版信息

J Biomed Mater Res B Appl Biomater. 2008 Apr;85(1):231-9. doi: 10.1002/jbm.b.30941.

Abstract

Electrochemically deposited nano-grained calcium phosphate coatings were produced on titanium substrates using aqueous electrolyte at acidic pH. Different coatings were produced by using cathodic current densities ranging from 10 to 50 mA/cm(2) from an ultrasonated electrolytic bath. These coatings contained dicalcium phosphate dihydrate as the predominant phase and hydroxyapatite as the minor phase. With increasing current density, hydroxyapatite content in the coatings increased. Dicalcium phosphate grains had size in the range of 55-85 nm and hydroxyapatite had grains in the size range of 20-25 nm. Scanning electron microscopy showed that the morphology of the coatings obtained at lower current densities had acicular structure. With increasing current densities, the needles became blunt and small and finally, at 50 mA/cm(2) the coating had globular deposits. Surface roughness of the coatings also increased with increasing deposition current density. Tensile bond strengths of the coatings were in the range of 3.6-6.9 MPa and decreased with increase of deposition current density. Heat-treatment of the coatings for 2 h at 500 degrees C completely eliminated the dicalcium phosphate phase and resulted in mono hydroxyapatite phase containing grains in the size range of 20-30 nm.

摘要

在酸性pH值的水性电解质条件下,于钛基底上制备了电化学沉积的纳米晶磷酸钙涂层。通过在超声电解槽中使用10至50 mA/cm²的阴极电流密度制备了不同的涂层。这些涂层以二水磷酸二钙为主相,羟基磷灰石为次相。随着电流密度的增加,涂层中羟基磷灰石的含量增加。二水磷酸钙晶粒尺寸在55 - 85 nm范围内,羟基磷灰石晶粒尺寸在20 - 25 nm范围内。扫描电子显微镜显示,在较低电流密度下获得的涂层形态具有针状结构。随着电流密度的增加,针状物变得钝且小,最终在50 mA/cm²时涂层具有球状沉积物。涂层的表面粗糙度也随着沉积电流密度的增加而增加。涂层的拉伸粘结强度在3.6 - 6.9 MPa范围内,并随着沉积电流密度的增加而降低。涂层在500℃下热处理2小时完全消除了二水磷酸钙相,并形成了晶粒尺寸在20 - 30 nm范围内的单羟基磷灰石相。

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