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Microwave-assisted rapid preparation of Ca10Na(PO4)(7) using sodium triphosphate as a phosphorus source

机译:以三磷酸钠为磷源的微波辅助快速制备Ca10Na(PO4)(7)

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摘要

As a potential orthopedic biomaterial, calcium sodium phosphate (CNP) represents a viable alternative to the quintessentially important beta-tricalcium phosphate (beta-TCP). The conventional solid-state synthesis of CNP requires extensive time and energy with ease of introduction of impurities and formation of coarse particles needing further comminution. The present work demonstrates a simple but versatile microwave assisted method to prepare CNP with negative zeta potential using sodium polyphosphate and calcium chloride as precursors. There are several important characteristics of the product. The as-synthesized CNP crystals showed two different morphologies- polygonal and whisker-like. The as-formed CNP was thermally stable without new phase nucleation after calcination at 1000 degrees C. This material promoted the proliferation of osteoblast cells as compared to HA in vitro. Additionally, the particles can be easily dispersed because of their negative zeta potential. Finally, the particles revealed their anti-Escherichia coli attachment potential. With all of these attributes, it is expected CNP can be a potential biomaterial in orthopedics and a good candidate for fabrication of composites with relevant biopolymer matrices. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:作为潜在的骨科生物材料,磷酸钙钠(CNP)代表了最重要的典型β-磷酸三钙(β-TCP)的可行替代品。 CNP的常规固态合成需要大量的时间和能量,并且容易引入杂质和形成需要进一步粉碎的粗颗粒。本工作演示了一种简单但通用的微波辅助方法,以聚磷酸钠和氯化钙为前体制备具有负ζ电势的CNP。产品有几个重要特征。合成后的CNP晶体显示两种不同的形态-多边形和晶须状。形成的CNP在1000摄氏度下煅烧后是热稳定的,没有新的相成核。与HA体外相比,该材料促进成骨细胞的增殖。另外,由于它们的负ζ电势,它们可以容易地分散。最后,这些颗粒显示出其抗大肠杆菌附着的潜力。具有所有这些属性,CNP有望成为整形外科的潜在生物材料,并且是制造具有相关生物聚合物基质的复合材料的良好候选者。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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