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无机、杂化和活的大孔泡沫:“跳出框框”的多相催化。

Inorganic, Hybridized and Living Macrocellular Foams: "Out of the Box" Heterogeneous Catalysis.

机构信息

Université de Bordeaux, CRPP-UPR CNRS 8641 115 Avenue Albert Schweitzer, 33600, Pessac, FRANCE.

Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139.

出版信息

Chem Rec. 2018 Jul;18(7-8):776-787. doi: 10.1002/tcr.201700075. Epub 2017 Dec 1.

Abstract

With this personal account we show how the Integrative Chemistry, when combining the sol-gel process and concentrated emulsions, allows to trigger inorganic, hybrid or living materials when dedicated toward heterogeneous catalysis applications. In here we focus on 3D-macrocellular monolithic foams bearing hierarchical porosities and applications thereof toward heterogeneous catalysis where both activities and mass transport are enhanced. We thereby first depict the general background of emulsions, focusing on concentrated ones, acting as soft templates for the design of solid (HIPE) foams, HIPE being the acronym for High Internal Phase Emulsions while encompassing both sol-gel and polymer chemistry. Secondly we extend this approach toward the design of inorganic cellular materials labeled Si(HIPE) and hybrid organic-inorganic foams, labeled Organo-Si(HIPE), where heterogeneous catalysis applications are addressed considering acidic, metallic, enzymatic and bacterial-based modified Si-HIPE. Along, we will show how the fluid hydrodynamic within the macrocellular foams is offering advanced "out of the box" heterogeneous catalytic capabilities.

摘要

我们通过个人叙述来展示,当综合化学将溶胶-凝胶过程和浓缩乳液结合使用时,如何针对多相催化应用触发无机、杂化或活性材料。在这里,我们专注于具有分级多孔性的 3D 大孔整体式泡沫及其在多相催化中的应用,在多相催化中,活性和质量传递都得到了增强。我们首先描述了乳液的一般背景,重点介绍了浓缩乳液作为固体(HIPE)泡沫设计的软模板,HIPE 是高内相乳液的缩写,同时涵盖了溶胶-凝胶和聚合物化学。其次,我们将这种方法扩展到设计无机多孔材料 Si(HIPE)和有机-无机杂化泡沫 Organo-Si(HIPE),并考虑到酸性、金属、酶和基于细菌的改性 Si-HIPE 来解决多相催化应用。同时,我们将展示大孔泡沫内的流体动力学如何提供先进的“即用型”多相催化能力。

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