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用于牙科生物材料的硅酸三钙水泥的特性和水合动力学。

Characterization and hydration kinetics of tricalcium silicate cement for use as a dental biomaterial.

机构信息

Department of Dental Surgery, Faculty of Dental Surgery, University of Malta, Msida MSD 2080, Malta.

出版信息

Dent Mater. 2011 Aug;27(8):836-44. doi: 10.1016/j.dental.2011.04.010. Epub 2011 May 19.

Abstract

OBJECTIVES

Investigation and characterization of the replacement of the Portland cement component in mineral trioxide aggregate (MTA) with tricalcium silicate cement which is manufactured using the sol-gel method from pure raw materials.

METHODS

Tricalcium silicate and Portland cement were characterized by viewing under the scanning electron microscope (SEM) and surface imaging and elemental analysis with X-ray energy dispersive analysis (EDX), and by X-ray diffraction analysis with Rietveld refinement. In addition the hydration products of the material after 28 days of curing were evaluated by plotting atomic ratio plots from the EDX data. The cement leachate was evaluated for pH and chemical composition by inductively coupled plasma.

RESULTS

Portland cement was composed of 68% tricalcium silicate. The tricalcium silicate cement was 99% pure. On hydration both cements produced calcium silicate hydrate and calcium hydroxide. The calcium hydroxide was leached in solution with higher leaching in HBSS. The leaching of calcium hydroxide in solution resulted in an alkaline pH. The reaction of calcium with the phosphorus present in HBSS resulting in the deposition of calcium phosphate on the cement surface.

SIGNIFICANCE

Tricalcium silicate could prospectively replace the Portland cement component in MTA.

摘要

目的

研究并描述用溶胶-凝胶法从纯原料制造的硅酸三钙水泥替代矿三氧化物聚合体(MTA)中的波特兰水泥成分。

方法

通过扫描电子显微镜(SEM)观察、表面成像和 X 射线能量色散分析(EDX)进行元素分析,以及 X 射线衍射分析和 Rietveld 精修对硅酸三钙和波特兰水泥进行了表征。此外,通过从 EDX 数据绘制原子比图来评估材料在 28 天固化后的水化产物。通过电感耦合等离子体评估水泥浸出液的 pH 值和化学成分。

结果

波特兰水泥由 68%的硅酸三钙组成。硅酸三钙水泥是 99%的纯物质。水化后,两种水泥都生成了硅酸钙水合物和氢氧化钙。氢氧化钙在溶液中浸出,在 HBSS 中浸出率更高。溶液中氢氧化钙的浸出导致 pH 值呈碱性。钙与 HBSS 中存在的磷反应,导致磷酸钙在水泥表面沉积。

意义

硅酸三钙有可能替代 MTA 中的波特兰水泥成分。

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