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Electrochemical Behaviour and X-ray Fluorescence Study of AgNP-GO-CS Coated AISI 303 Austenitic Stainless Steel and Ceramic Commercial Products

机译:AISI 303 AISI 303奥氏体不锈钢和陶瓷商业产品的电化学行为和X射线荧光研究

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Herein, the performance of stainless steel and ceramic commercial cooking utensils was investigated under varying temperature, hydrogen evolution and pH. X-ray fluorescence (XRF) analysis was used to determine the elemental composition of commercial products manufactured by a local company. Prior to XRF analysis, the products were immersed in universal buffer for 2 days at different pH and temperature values before and after coating with silver nanoparticles/graphene oxide/chitosan. Release assessments were performed for both types of commercial utensils. Total reflection XRF was used to precisely examine the wt% of Cr, Mn, and Ni for the stainless steel sample and Si, Ti, and Ba for the ceramic sample after immersion under certain conditions. The ion release from both materials was temperature- and pH-dependent before and after nanocoating. All experiments showed that the lowest hydrogen evolution and amount of release for both commercial utensils occurred at low temperature and high pH values with this nanocoating. The coatings were also studied electrochemically; the stainless steel was more passive than the ceramic without coating. After coating, they were comparable at temperatures of 75 - 250 oC from pH 5 - 11, where the ceramic performed better than the stainless steel and was more passive. The novel nanocoating reported in this work will enable both customers and manufactures to upgrade the quality of their products.
机译:这里,在不同温度,氢气进化和pH下研究了不锈钢和陶瓷商业烹饪器具的性能。 X射线荧光(XRF)分析用于确定当地公司制造的商业产品的元素组成。在XRF分析之前,将产物在通用缓冲液中浸入不同的pH和温度值之前和涂覆银纳米粒子/石墨烯氧化物/壳聚糖之前和之后的温度值2天。对两种类型的商业用具进行释放评估。在浸入某些条件下浸泡后,使用总反射XRF用于精确地检查用于不锈钢样品和Si,Ti,Si,Ti和Si,Ti和Si,Ti和Ba的Ni的Wt%。两种材料的离子释放是纳米涂覆之前和之后的温度 - 和pH依赖性。所有实验表明,在低温和高pH值中,纳米核化的低温和高pH值发生最低的氢进化和释放量。涂层也被电化学研究;不锈钢比陶瓷更自由涂层。涂布后,它们在75-250℃的温度下与pH5-11的温度相当,其中陶瓷比不锈钢表现较好,更具无源。这项工作中报告的新型纳米膜将使客户和制造商能够提升产品质量。

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