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Get Beyond Limits: From Colloidal Tectonics Concept to the Engineering of Eco-Friendly Catalytic Systems

机译:超越极限:从胶体构造概念到生态友好的催化系统工程

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摘要

The interactions between two or more molecules or colloidal particles can be used to obtain a variety of self-assembled systems called supramolecules or supracolloids. There is a clear, but neglected, convergence between these two fields. Indeed, the packing of molecules into colloidal or supracolloidal particles emerges as a smart solution to build an infinite variety of reversible systems with predictable properties. In this respect, the molecular building blocks are called “tectons” whereas “colloidal tectonics” describes the spontaneous formation of (supra)colloidal structures using tectonic subunits. As a consequence, a bottom-up edification is allowed from tectons into (supra)colloidal particles with higher degrees of organization (). These (supra)colloidal systems can be very useful to obtain catalysts with tunable amphiphilic properties. In this perspective, an overview of colloidal tectonics concept is presented as well as its use for the design of new, smart, and flexible catalytic systems. Finally, the advantages of these catalytic devices are discussed and the perspective of future developments is addressed especially in the context of “green chemistry.”Bottom-up edification of colloidal or supracolloidal systems from tectons.
机译:两个或多个分子或胶体颗粒之间的相互作用可用于获得称为超分子或超胶体的各种自组装系统。这两个领域之间存在明显但被忽视的融合。的确,将分子堆积成胶体或超胶体颗粒是一种明智的解决方案,可用于构建具有可预测特性的多种可逆系统。在这方面,分子构件被称为“构造”,而“胶体构造”描述了使用构造亚基自发形成(超)胶体结构。结果,从构造到自上而下的培养成为具有较高组织度的胶体粒子。这些(超)胶体体系对于获得具有可调两亲性质的催化剂非常有用。从这个角度出发,对胶体构造概念进行了概述,并将其用于设计新的,智能的和灵活的催化系统。最后,讨论了这些催化装置的优点,特别是在“绿色化学”的背景下讨论了未来发展的前景。<!-fig ft0-> <!-fig mode = f1-> < / a> <!-标题a7->来自构造体的胶体或胶体上系统的自下而上的教育。

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