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'Green' Cr(iii)-glycine electrolyte for the production of FeCrNi coatings: electrodeposition mechanisms and role of by-products in terms of coating composition and microstructure

机译:“绿色”Cr(iii)-glycine电解质用于生产FECRNI涂层:电沉积机制和副产品的作用,涂料组合物和微观结构

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The electrodeposition of stainless steel-like FeCrNi alloys for miniaturised devices is appealing as it would allow combining excellent material properties (e.g. corrosion resistance, hardness, biocompatibility) at low-cost. However, conventional baths often contain hazardous hexavalent chromium. Cr-based alloys electrodeposited from environmentally friendly trivalent chromium electrolytes are crucial for industrial application for facilitating the transition towards sustainable and ecological production and processing. Nevertheless, this process has not been comprehensively studied or understood in depth: especially the role of organic agents (common additives for improving Cr(iii)-based plating; e.g. glycine) in terms of material properties of the electrodeposits. The aim of this work was to investigate the electrodeposition of FeCrNi coatings from a 'green' Cr(iii)-glycine electrolyte. Novel information was attained by analysing films developed under various conditions and characterising them using a combination of advanced techniques. The evolution of microstructure (from amorphous to nanocrystalline) in correlation with film composition (i.e. metals ratio and presence of impurities) and elemental 3D spatial distribution was achieved for coatings produced from different anode materials and thermal post-treatment. The influence of Cr(iii) and glycine in terms of coating atomic contents (i.e. Fe-Cr-Ni-O-C-N-H) was evaluated for films in which both the applied current density and electrolyte composition were varied. These results, together with a thorough analysis on metals speciation/complexation allowed us to propose various Cr(iii)-based electroreduction mechanisms, and to observe, upon annealing, segregation and distribution of impurities, as well as of oxides and metals with respect to microstructure variation, providing an explanation for the amorphisation process.
机译:用于小型化装置的不锈钢状Fecrni合金的电沉积是吸引人的吸引力,因为它允许以低成本组合优异的材料特性(例如耐腐蚀性,硬度,生物相容性)。然而,常规浴通常含有危险的六价铬。从环保的三价铬电解质中电沉积的Cr基合金对于工业应用来说至关重要,以便于过渡到可持续和生态生产和加工。尽管如此,在深度的情况下,尚未全面研究或理解该过程(尤其是有机剂的作用(用于改善Cr(III)的常见添加剂;例如,甘氨酸)在电沉积物的材料特性方面。这项工作的目的是从“绿色”Cr(III)甘氨酸电解质中探讨FECRNI涂层的电沉积。通过分析在各种条件下开发的薄膜并使用先进技术的组合来分析新颖的信息。为不同阳极材料和热后处理产生的涂层实现了与薄膜组合物相关性与薄膜组合物相关性与薄膜组合物(即金属比和杂质的存在)和元素3D空间分布的演变。对涂层原子含量(即Fe-Cr-Ni-O-C-N-H)的Cr(III)和甘氨酸的影响被评价涂敷电流密度和电解质组合物的薄膜。这些结果与彻底的金属形状/络合分析一起允许我们提出各种CR(III)的电荷电影机构,并在退火时,在杂质和氧化物和金属的退火和分布时观察微观结构变化,提供了无制过程的解释。

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    《RSC Advances 》 |2019年第44期| 共14页
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  • 正文语种 eng
  • 中图分类 化学 ;
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