Cristina Italiano , Gabriel Marino , Minju Thomas , Benjamin Hary , Steve Nardone , Simon Richard , Assia Saker , Damien Tasso , Nicolas Meynet , Pierre Olivier , Fausto Gallucci , Antonio Vita
{"title":"Ni/CeO2和Ni/CeO2- al2o3复合浸/旋涂沉积在3D打印AlSi10Mg周期性开放细胞结构(POCS)上","authors":"Cristina Italiano , Gabriel Marino , Minju Thomas , Benjamin Hary , Steve Nardone , Simon Richard , Assia Saker , Damien Tasso , Nicolas Meynet , Pierre Olivier , Fausto Gallucci , Antonio Vita","doi":"10.1016/j.apsadv.2025.100731","DOIUrl":null,"url":null,"abstract":"<div><div>The effect of catalyst formulations and coating procedures on the deposition of thin active layers based on Ni/CeO<sub>2</sub> and Ni/CeO<sub>2</sub>-Al<sub>2</sub>O<sub>3</sub> onto AlSi10Mg Periodic Open Cellular Structures (POCS) with cylindrical shape (10 mm diameter and 15 mm length) was experimentally assessed in this work. An aqueous liquid medium based on water, glycerol, and polyvinyl alcohol was used for powder dispersion, while a combined dip- /spin- coating technique was chosen for washcoat deposition on metallic 3D printed structures characterized by Body-Centered Cubic (BCC) and Kelvin unit cells. The rheological behaviour of the prepared slurry was also studied. Multiple depositions with intermediate flash drying steps at 450 °C were carried out. Washcoat loads of about 15 % (0.1 g cm<sup>−3</sup>) were obtained. The used powders were characterized by BET, XRD and pycnometry, instead, the as built and activated supports were characterized by SEM/EDX and pycnometry. No pore clogging phenomena were observed and irrespective of the geometry used, the layers are deposited homogeneously. Adhesion of the deposited layers, evaluated by means of accelerated stress test in ultrasound bath, pointed out that the thermal/anodization pre-treatment of support as well as the use of Disperal P2® as primer, play a crucial role in achieving high mechanical stability associated with weight loss between 0.86 and 12.7wt %. Finally, preliminary catalytic activity tests were performed to evaluate the impact of POCS morphology on performance. The Kelvin structure exhibited superior efficiency in methane steam reforming (SR) at low temperatures, attributed to its optimized pore network and improved distribution of the active phase.</div></div>","PeriodicalId":34303,"journal":{"name":"Applied Surface Science Advances","volume":"27 ","pages":""},"PeriodicalIF":8.7000,"publicationDate":"2025-04-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Combined dip/spin coating deposition of Ni/CeO2 and Ni/CeO2-Al2O3 onto 3D printed AlSi10Mg Periodic Open Cellular Structures (POCS)\",\"authors\":\"Cristina Italiano , Gabriel Marino , Minju Thomas , Benjamin Hary , Steve Nardone , Simon Richard , Assia Saker , Damien Tasso , Nicolas Meynet , Pierre Olivier , Fausto Gallucci , Antonio Vita\",\"doi\":\"10.1016/j.apsadv.2025.100731\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><div>The effect of catalyst formulations and coating procedures on the deposition of thin active layers based on Ni/CeO<sub>2</sub> and Ni/CeO<sub>2</sub>-Al<sub>2</sub>O<sub>3</sub> onto AlSi10Mg Periodic Open Cellular Structures (POCS) with cylindrical shape (10 mm diameter and 15 mm length) was experimentally assessed in this work. An aqueous liquid medium based on water, glycerol, and polyvinyl alcohol was used for powder dispersion, while a combined dip- /spin- coating technique was chosen for washcoat deposition on metallic 3D printed structures characterized by Body-Centered Cubic (BCC) and Kelvin unit cells. The rheological behaviour of the prepared slurry was also studied. Multiple depositions with intermediate flash drying steps at 450 °C were carried out. Washcoat loads of about 15 % (0.1 g cm<sup>−3</sup>) were obtained. The used powders were characterized by BET, XRD and pycnometry, instead, the as built and activated supports were characterized by SEM/EDX and pycnometry. No pore clogging phenomena were observed and irrespective of the geometry used, the layers are deposited homogeneously. 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引用次数: 0
摘要
实验研究了催化剂配方和涂层工艺对Ni/CeO2和Ni/CeO2- al2o3薄活性层沉积在圆柱形(直径10 mm,长15 mm)的AlSi10Mg周期性开放细胞结构(POCS)上的影响。使用基于水、甘油和聚乙烯醇的含水液体介质进行粉末分散,而选择浸/自旋复合涂层技术在以体心立方(BCC)和开尔文单元胞为特征的金属3D打印结构上进行水洗涂层沉积。并对制备的浆料的流变特性进行了研究。在450°C的中间闪蒸干燥步骤中进行了多次沉积。获得了约15% (0.1 g cm−3)的洗衣衣负荷。采用BET、XRD、pypyometry对所制备粉体进行了表征,采用SEM/EDX、pypyometry对所制备的载体进行了表征。没有观察到孔隙堵塞现象,并且无论使用何种几何形状,各层沉积均匀。通过超声浴加速应力测试评估沉积层的附着力,指出支撑的热/阳极氧化预处理以及使用Disperal P2®作为处理剂,在实现高机械稳定性方面发挥了至关重要的作用,重量减轻了0.86至12.7wt %。最后,进行了初步的催化活性测试,以评估POCS形态对性能的影响。开尔文结构优化了孔隙网络,改善了活性相的分布,在低温条件下表现出优异的甲烷蒸汽重整效率。
Combined dip/spin coating deposition of Ni/CeO2 and Ni/CeO2-Al2O3 onto 3D printed AlSi10Mg Periodic Open Cellular Structures (POCS)
The effect of catalyst formulations and coating procedures on the deposition of thin active layers based on Ni/CeO2 and Ni/CeO2-Al2O3 onto AlSi10Mg Periodic Open Cellular Structures (POCS) with cylindrical shape (10 mm diameter and 15 mm length) was experimentally assessed in this work. An aqueous liquid medium based on water, glycerol, and polyvinyl alcohol was used for powder dispersion, while a combined dip- /spin- coating technique was chosen for washcoat deposition on metallic 3D printed structures characterized by Body-Centered Cubic (BCC) and Kelvin unit cells. The rheological behaviour of the prepared slurry was also studied. Multiple depositions with intermediate flash drying steps at 450 °C were carried out. Washcoat loads of about 15 % (0.1 g cm−3) were obtained. The used powders were characterized by BET, XRD and pycnometry, instead, the as built and activated supports were characterized by SEM/EDX and pycnometry. No pore clogging phenomena were observed and irrespective of the geometry used, the layers are deposited homogeneously. Adhesion of the deposited layers, evaluated by means of accelerated stress test in ultrasound bath, pointed out that the thermal/anodization pre-treatment of support as well as the use of Disperal P2® as primer, play a crucial role in achieving high mechanical stability associated with weight loss between 0.86 and 12.7wt %. Finally, preliminary catalytic activity tests were performed to evaluate the impact of POCS morphology on performance. The Kelvin structure exhibited superior efficiency in methane steam reforming (SR) at low temperatures, attributed to its optimized pore network and improved distribution of the active phase.