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银铜纳米颗粒掺杂汞合金的形态学与电化学行为

Morphology and electrochemical behavior of Ag-Cu nanoparticle-doped amalgams.

作者信息

Chung Kwok-Hung, Hsiao Li-Yin, Lin Yu-Sheng, Duh Jenq-Gong

机构信息

Division of Dental Materials Science, Department of Restorative Dentistry, University of Washington, Seattle, WA, USA.

出版信息

Acta Biomater. 2008 May;4(3):717-24. doi: 10.1016/j.actbio.2008.01.005. Epub 2008 Jan 26.

Abstract

The aim of this study was to introduce Ag-Cu phase nanopowder as an additive to improve the corrosion behavior of dental amalgams. A novel Ag-Cu nanopowder was synthesized by the precipitation method. An amalgam alloy powder (World-Cap) was added and mixed with 5 wt.% and 10 wt.% of Ag-Cu nanopowders, respectively, to form experimental amalgam alloy powders. The original alloy powder was used as a control. Alloy powders were examined using X-ray diffraction, transmission electron microscopy (TEM), scanning electron microscopy and electron probe microanalysis. Amalgam disk specimens of metallurgically prepared were tested in 0.9% NaCl solution using electrochemical methods. The changes in the corrosion potential and anodic polarization characteristics were determined. Corrosion potential data were analyzed statistically (n=3, analysis of variance, Tukey's test, p<0.05). The diameters of lamellar structure Ag-Cu nanoparticles were measured to be approximately 30 nm. The composition of the Ag-Cu nanoparticles determined by TEM-energy-dispersive spectroscopy was 56.28 at.% Ag-43.72 at.% Cu. A light-shaded phase was found mixing with dark Cu-Sn reaction particles in the reaction zones of Ag-Cu nanoparticle-doped amalgams. The Ag-Cu nanoparticle-doped amalgams exhibited zero current potentials more positive than the control (p<0.05) and no current peak was observed at -325mV that related to Ag-Hg phase and Cu6Sn5 phase in anodic polarization curves. The results indicated that the corrosion resistance of high-copper single-composition amalgam could be improved by Ag-Cu nanoparticle-doping.

摘要

本研究的目的是引入银铜相纳米粉末作为添加剂,以改善牙科汞合金的腐蚀行为。通过沉淀法合成了一种新型银铜纳米粉末。添加一种汞合金粉末(World-Cap),并分别与5 wt.%和10 wt.%的银铜纳米粉末混合,以形成实验性汞合金粉末。原始合金粉末用作对照。使用X射线衍射、透射电子显微镜(TEM)、扫描电子显微镜和电子探针微分析对合金粉末进行了检测。采用电化学方法在0.9%氯化钠溶液中对冶金制备的汞合金圆盘试样进行了测试。测定了腐蚀电位和阳极极化特性的变化。对腐蚀电位数据进行了统计学分析(n=3,方差分析,Tukey检验,p<0.05)。测得层状结构银铜纳米颗粒的直径约为30 nm。通过TEM-能量色散光谱测定的银铜纳米颗粒的组成是56.28 at.% Ag-43.72 at.% Cu。在银铜纳米颗粒掺杂汞合金的反应区发现有浅色相与深色的铜锡反应颗粒混合。银铜纳米颗粒掺杂汞合金的零电流电位比对照更正(p<0.05),并且在阳极极化曲线中在-325mV处未观察到与银汞相和Cu6Sn5相相关的电流峰。结果表明,通过银铜纳米颗粒掺杂可以提高高铜单组分汞合金的耐腐蚀性。

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