简介概要

Synthesis and Characterization of Core-shell Hydroxyapatite/chitosan Biocomposite Nanospheres

来源期刊:Journal Of Wuhan University Of Technology Materials Science Edition2010年第2期

论文作者:李湘南 陈晓明

文章页码:252 - 256

摘    要:Novel core-shell hydroxyapatite/chitosan biocomposite nanospheres were synthesized in a multiple emulsion. The multiple emulsion was a w/o/w emulsion, made of diammonium phosphate solution as an inner aqueous phase, cyclohexane as an oil phase, and calcium nitrate solution and chitosan solution as an outer aqueous. The forming mechanism of core-shell spheres and the influence of temperature on the morphology of the nanospheres were investigated. The diameter of the resulting core-shell nanospheres was 100-200 nm and the thickness of the chitosan shell was about 10 nm. And it concluded that at different reaction temperature the morphologies of the products would be changed. The core-shell nanospheres have potential applications for the development of new biomedical materials.

详情信息展示

Synthesis and Characterization of Core-shell Hydroxyapatite/chitosan Biocomposite Nanospheres

李湘南1,2,陈晓明1

1. Biomedical Materials and Engineering Research Center, Wuhan University of Technology2. School of Chemical Engineering, Wuhan University of Technology

摘 要:Novel core-shell hydroxyapatite/chitosan biocomposite nanospheres were synthesized in a multiple emulsion. The multiple emulsion was a w/o/w emulsion, made of diammonium phosphate solution as an inner aqueous phase, cyclohexane as an oil phase, and calcium nitrate solution and chitosan solution as an outer aqueous. The forming mechanism of core-shell spheres and the influence of temperature on the morphology of the nanospheres were investigated. The diameter of the resulting core-shell nanospheres was 100-200 nm and the thickness of the chitosan shell was about 10 nm. And it concluded that at different reaction temperature the morphologies of the products would be changed. The core-shell nanospheres have potential applications for the development of new biomedical materials.

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