DeSchepper E J, Oshida Y, Moore B K, Cook N B, Eggertson H
Indiana University School of Dentistry, Indianapolis 46202, USA.
Oper Dent. 1997 Sep-Oct;22(5):209-16.
Concerns of mercury toxicity have led to the development of gallium-based restorative materials to replace dental amalgam. A new gallium-based dental restorative, Galloy, was compared with a high-copper amalgam, Permite, for anodic polarization behavior in deoxygenated Ringer's solution and by immersion testing in normal Ringer's solution at 37 degrees C. Corrosion products were analyzed using energy dispersive X-ray spectrometry and transmission electron diffraction. The data from both sources were consistent with the presence of alpha-Ga2O3 and SnO2 as the primary corrosion products of Galloy. Anodic polarization behavior of Galloy- and Permite-coupled specimens suggests that coupling Galloy with the more noble Permite amalgam may cause accelerated electrochemical corrosion and that Galloy is more corrosion prone than Permite.
对汞毒性的担忧促使人们开发基于镓的修复材料来替代牙科汞合金。一种新型的基于镓的牙科修复材料Galloy,与一种高铜汞合金Permite,在脱氧林格氏溶液中的阳极极化行为以及在37摄氏度的正常林格氏溶液中进行浸泡测试方面进行了比较。使用能量色散X射线光谱法和透射电子衍射对腐蚀产物进行了分析。来自这两种方法的数据均与α-Ga2O3和SnO2作为Galloy的主要腐蚀产物的存在情况一致。Galloy与Permite耦合试样的阳极极化行为表明,将Galloy与更具惰性的Permite汞合金耦合可能会导致加速的电化学腐蚀,并且Galloy比Permite更容易发生腐蚀。