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首页> 外文期刊>Journal of the European Ceramic Society >Self-functionalization of cellular alumina monoliths in hydrothermal conditions
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Self-functionalization of cellular alumina monoliths in hydrothermal conditions

机译:水热条件下多孔氧化铝整料的自功能化

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Alumina-based open cellular microstructures with highly interconnected porosity attract much interest as supports for catalytic applications, with emphasis on petroleum and automotive sector. This work reports a novel route for in-situ functionalization of the sintered porous alpha-Al2O3 ceramics by microano structures of boehmite (gamma-AlOOH), promoted by hydrothermal treatment in alkaline conditions. The mechanism of the process includes slow dissolution of the matrix, which acts as an aluminum precursor, and transport of Al-containing species inside the pores, resulting in growth of boehmite fibers and clusters of various morphologies, as confirmed by combined SEM/EDS/XRD/FTIR. These results suggest that deliberate variation of the pH and ionic strength of the hydrothermal medium may represent a promising strategy for controlling the spatial distribution, morphology and dimension scale of the grown boehmite. A complementary approach implies pre-treatment of cellular monoliths in highly-reducing conditions to increase the concentration of surface defects and dangling bonds, facilitating the matrix dissolution and probably acting as nucleation centers, and thus to boost the functionalization level. (C) 2015 Elsevier Ltd. All rights reserved.
机译:具有高度互连孔隙率的基于氧化铝的开孔微结构作为催化应用的载体引起了人们的极大兴趣,重点是石油和汽车领域。这项工作报告了通过碱性条件下水热处理促进勃姆石的微/纳米结构(γ-AlOOH)对烧结多孔α-Al2O3陶瓷进行原位功能化的新途径。该过程的机制包括缓慢溶解作为铝前体的基体,以及在孔内传输含铝物质,从而导致勃姆石纤维和各种形态簇的生长,这已通过SEM / EDS / XRD / FTIR。这些结果表明,故意改变水热介质的pH值和离子强度可能代表一种控制生长的勃姆石的空间分布,形态和尺寸尺度的有前途的策略。一种补充方法意味着在高度还原的条件下对细胞整体进行预处理,以增加表面缺陷和悬空键的浓度,促进基质溶解并可能充当成核中心,从而提高功能化水平。 (C)2015 Elsevier Ltd.保留所有权利。

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