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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Investigation of corrosion behavior of biodegradable magnesium alloys using an online-micro-flow capillary flow injection inductively coupled plasma mass spectrometry setup with electrochemical control
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Investigation of corrosion behavior of biodegradable magnesium alloys using an online-micro-flow capillary flow injection inductively coupled plasma mass spectrometry setup with electrochemical control

机译:使用在线微流毛细管流动注射感应耦合等离子体质谱仪和电化学控制研究可降解镁合金的腐蚀行为

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摘要

The development of biodegradable metallic materials designed for implants or medical stents is new and is one of the most interesting new fields in material science. Besides biocompatibility, a detailed understanding of corrosion mechanisms and dissolution processes is required to develop materials with tailored degradation behavior. The materials need to be sufficiently stable as long as they have to fulfill their medical task. However, subsequently they should dissolve completely in a controlled manner in terms of maximum body burden. This study focuses on the elemental and time resolved dissolution processes of a magnesium rare earth elements alloy which has been compared to pure magnesium with different impurity level. The here described investigations were performed using a novel analytical setup based on a micro-flow capillary online-coupled via a flow injection system to a plasma mass spectrometer. Differences in element-specific and time-dependent dissolution were monitored for various magnesium alloys in contact with sodium chloride or mixtures of sodium and calcium chloride as corrosive media. The dissolution behavior strongly depends on bulk matrix elements, secondary alloying elements and impurities, which are usually present even in pure magnesium.
机译:用于植入物或医疗支架的可生物降解金属材料的开发是新的,并且是材料科学中最有趣的新领域之一。除了生物相容性,还需要对腐蚀机理和溶解过程有详细的了解,以开发具有定制降解行为的材料。材料必须足够稳定,只要它们必须完成其医疗任务即可。然而,随后它们应以最大的身体负担以受控的方式完全溶解。这项研究的重点是镁稀土元素合金的元素分解和时间分解溶解过程,该过程已与不同杂质水平的纯镁进行了比较。这里描述的研究是使用一种新颖的分析装置进行的,该装置基于通过流动注射系统在线耦合到等离子体质谱仪的微流毛细管。监测了各种镁合金与氯化钠或钠和氯化钙的混合物作为腐蚀性介质接触时,元素特异性和时间依赖性溶出度的差异。溶解行为主要取决于本体基质元素,次要合金元素和杂质,即使在纯镁中也通常存在。

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