The Effect of Variations of Hydrothermal Temperatures on Ex-Situ Hydroxyapatite/Al2O3 Doping Process from Papai Shrimp (Acetes erythraeus)

R. Bemis, R. D. Puspitasari, Heriyanti Heriyanti, R. Rahmi, Gessy Tri Priyanti
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Abstract

Hydroxyapatite (HA) is an alloplastic material that is commonly used as a substitute for bone grafts or bone grafts because it has bioactive properties, namely osteoconduction. This study aims to improve or develop the function of hydroxyapatite to become a strong and resilient biological device that can withstand loads for appropriate functions such as bone implants. Therefore, it is necessary to modify the structure, among others, by the reinforcement process (composite formation) with other materials.The doping of hydroxyapatite/Al2O3 in this study was carried out using the hydrothermal method. The hydrothermal method is one of the hydroxyapatite synthesis methods carried out at high pressure and temperature to achieve equilibrium. The material used in this study was papai shrimp as a source of calcium. The temperature has an effect in this study where the higher the doping temperature used, the higher the degree of crystallinity, particle size homogeneity, and porosity value. From the doping results, it is known that a temperature of 300°C produces a degree of crystallinity of 54.32% and a crystal size of 3.75 nm with a porosity value of 99.38%. This result is much better than the undoped hydroxyapatite in the previous study.
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水热温度变化对木瓜虾原位掺杂羟基磷灰石/Al2O3过程的影响
羟基磷灰石(HA)是一种同种异体材料,通常用作骨移植物或骨移植物的替代品,因为它具有生物活性,即骨传导性。这项研究旨在改善或发展羟基磷灰石的功能,使其成为一种坚固而有弹性的生物装置,能够承受适当功能的负载,如骨植入物。因此,除其他外,有必要通过与其他材料的加固工艺(复合成型)来修改结构。本研究采用水热法对羟基磷灰石/Al2O3进行了掺杂。水热法是在高压和高温下进行以达到平衡的羟基磷灰石合成方法之一。本研究中使用的材料是木瓜虾作为钙的来源。在本研究中,温度具有影响,其中使用的掺杂温度越高,结晶度、粒度均匀性和孔隙率值就越高。从掺杂结果可知,温度为300°C时,结晶度为54.32%,晶体尺寸为3.75 nm,孔隙率为99.38%。这一结果比之前研究中未掺杂的羟基磷灰石要好得多。
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