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Eco-friendly preparation of nanocrystalline Fe-Cr alloy coating by electrodeposition in deep eutectic solvent without any additives for anti-corrosion

机译:深沉积溶剂中电沉积的纳米晶Fe-Cr合金涂层的环晶二铬涂层,无论是抗腐蚀的添加剂

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Nanocrystalline Fe-Cr alloy coatings are prepared by electrodeposition in choline chloride-ethylene glycol (ChCI-EG) deep eutectic solvent (DES) by varying cell voltage (2.4-2.8 V) and temperature (333-353 K) without any additives. Cyclic voltammetry demonstrates that Fe(II) and Cr(II) can be co-deposited, also the presence of Fe(II) promotes the reduction of Cr(II). Linear sweep voltammetry reveals that increasing temperature facilitates the reduction of Fe(II) while not to Cr(II). Chronoamperometry verifies the electrocrystallization of Fe(II), Cr(III) and the both on glassy carbon electrode tends to instantaneous nucleation. FE-SEM shows that the microscopic morphology of obtained alloy coating is dense and uniform. With the increase of cell voltage, the grain gradually refines with the microstructure transform from layered-rock to weedy. As the temperature decreases, the surface becomes homogeneous with the morphology range from weedy to granular. HR-TEM indicates that the product obtained at 2.8 V and 333 K composed of compact and grained surface has an average particle size of approximate to 1.53 nm with polycrystalline structure. EDS, XRD and XPS spectrum prove it is pure with a passive film composed of Cr2O3 and Fe2O3 on the surface. Tafel polarization test confirms the as-prepared alloy coating possesses excellent corrosion resistance. All these findings promise an eco-friendly and simple route for the cleaner production of nanocrystalline Fe-Cr alloy coating with excellent corrosion resistance at near room temperature without any additives.
机译:通过改变电池电压(2.4-2.8V)和温度(333-353K),在氯化胆碱-乙二醇(ChCI-EG)深共晶溶剂(DES)中电沉积制备纳米晶Fe-Cr合金涂层,无需任何添加剂。循环伏安法表明,Fe(II)和Cr(II)可以共沉积,Fe(II)的存在促进了Cr(II)的还原。线性扫描伏安法表明,温度升高有利于Fe(II)的还原,而不利于Cr(II)的还原。计时电流法证实了Fe(II)、Cr(III)和二者在玻碳电极上的电结晶倾向于瞬时形核。FE-SEM显示,所得合金镀层的微观形貌致密均匀。随着电池电压的升高,晶粒逐渐细化,显微结构由层状岩石向杂草状转变。随着温度降低,表面变得均匀,形态从杂草状到颗粒状。HR-TEM表明,在2.8 V和333 K下获得的产物由致密的晶粒表面组成,平均粒径约为1.53 nm,具有多晶结构。EDS、XRD和XPS光谱证明其纯度高,表面有一层由Cr2O3和Fe2O3组成的钝化膜。Tafel极化试验证实,所制备的合金涂层具有优异的耐蚀性。这些研究结果为纳米晶Fe-Cr合金涂层的清洁生产提供了一条简单、环保的途径,该涂层在近室温下具有优异的耐腐蚀性,无需任何添加剂。

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