Syntjesos of Stoichiometric Hydroxyapatite Powder by $CO_3$$^{2-}$ Substitution During Precipitation

$CO_3$$^{2-}$치환을 이용한 화학양론조성 수산화 아파타이트 분말의 합성

  • 전성재 (영남대학교 금속공학 및 재료공학부) ;
  • 김석영 (영남대학교 금속공학 및 재료공학부) ;
  • 한주환 (영남대학교 금속공학 및 재료공학부)
  • Published : 1998.03.01

Abstract

Ca-deficiency frequently observed in the hydroxyapatite powders prepared by precipitation which is known to be deleterious for its application to biomaterials was prevented by the technique developed in this study. In addition the prepared powder has been revealed to be quite active that full density is achieved at temperatures as low as 100$0^{\circ}C$ Instead of using N2 air was chosen as the processing atmosphere during the precipitation and aging of hydroxyapatite. {{{{ {CO }`_{3 } ^{2- } }} ions from the processing atmosphere(air) substitute partly for {{{{ {PO }`_{4 } ^{3- } }} ions in the hydroxyapatite and its content can be controlled by pH of the solution where the pre-cipitation reaction occurs.

세라믹스계 생체재료중에서 그 화학조성과 결정구조가 사람의 뼈와 매우 유사하여, 다른 재료보다 생체진화성이 월등히 우수한 수산화 아파타이트 분말을 용액침전법으로 제조하였다. 이때 용액침전법의 가장 큰 단점인 칼슘결손의 발생을 억제하고, 아울러 질소대신 공기중에서도 화학양론조성의 수산화 아파타이트 원료분말을 쉽게 합성할 수 있는 방법을 개발하였다. 즉, 공기중에 존재하는 CO2 기체로부터 형성된 반응용액중에 {{{{ {CO }`_{3 } ^{2- } }} 이온의 농도를 pH를 이용 조절함으로써 침전반응 및 여과공정을 공기중에서 수행하면서도 Ca의 결손이 없고 소결성이 매우 우수한 수산화 아파타이트 분말을 제조할 수 있었다.

Keywords

References

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