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CaSiO3-HAp Structural Bioceramic by Sol-Gel and SPS-RS Techniques: Bacteria Test Assessment

机译:CaSiO3-HAp结构生物陶瓷的Sol-Gel和SPS-RS技术:细菌测试评估

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摘要

The article presents an original way of getting porous and mechanically strong CaSiO -HAp ceramics, which is highly desirable for bone-ceramic implants in bone restoration surgery. The method combines wet and solid-phase approaches of inorganic synthesis: sol-gel (template) technology to produce the amorphous xonotlite (Ca Si O ·2OH) as the raw material, followed by its spark plasma sintering–reactive synthesis (SPS-RS) into ceramics. Formation of both crystalline wollastonite (CaSiO ) and hydroxyapatite (Ca (PO ) (OH) ) occurs “in situ” under SPS conditions, which is the main novelty of the method, due to combining the solid-phase transitions of the amorphous xonotlite with the chemical reaction within the powder mixture between CaO and CaHPO . Formation of pristine HAp and its composite derivative with wollastonite was studied by means of TGA and XRD with the temperatures of the “in situ” interactions also determined. A facile route to tailor a macroporous structure is suggested, with polymer (siloxane-acrylate latex) and carbon (fibers and powder) fillers being used as the pore-forming templates. Microbial tests were carried out to reveal the morphological features of the bacterial film that formed on the surface of the ceramics, depending on the content of HAp (0, 20, and 50 wt%).
机译:本文介绍了一种获得多孔且机械强度高的CaSiO-HAp陶瓷的原始方法,这对于骨骼修复手术中的骨陶瓷植入物是非常理想的。该方法结合了无机合成的湿法和固相法:溶胶-凝胶(模板)技术,以非晶态硬硅钙石(Ca Si O·2OH)为原料,然后进行火花等离子体烧结-反应合成(SPS-RS) )制成陶瓷。结晶硅灰石(CaSiO)和羟基磷灰石(Ca(PO)(OH))的形成均在SPS条件下“原位”发生,这是该方法的主要新颖之处,这是由于将非晶质硬硅钙石与固相钙钛矿的固相转变相结合CaO和CaHPO之间粉末混合物中的化学反应。通过TGA和XRD研究了原始HAp及其与硅灰石的复合衍生物的形成,并确定了“原位”相互作用的温度。提出了一种用于修饰大孔结构的简便方法,其中将聚合物(硅氧烷-丙烯酸酯胶乳)和碳(纤维和粉末)填料用作成孔模板。根据HAp的含量(0、20和50 wt%),进行了微生物测试以揭示形成在陶瓷表面的细菌膜的形态特征。

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