Díaz Urbano, Corma Avelino
Instituto de Tecnología Química, Universitat Politècnica de València-Consejo Superior, de Investigaciones Científicas, Avenida de los Naranjos s/n, 46022, Valencia, Spain.
Chemistry. 2018 Mar 15;24(16):3944-3958. doi: 10.1002/chem.201704185. Epub 2018 Jan 25.
The design of new hybrid materials with tailored properties at the nano-, meso-, and macro-scale, with the use of structural functional nanobuilding units, is carried out to obtain specific multi-functional materials. Organization into controlled 1D, 2D, and 3D architectures with selected functionalities is key for developing advanced catalysts, but this is hardly accomplished using conventional synthesis procedures. The use of pre-formed nanostructures, derived either from known materials or made with specific innovative synthetic methodologies, has enormous potential in the generation of multi-site catalytic materials for one-pot processes. The present concept article introduces a new archetype wherein self-assembled nanostructured builder units are the base for the design of multifunctional catalysts, which combine catalytic efficiency with fast reactant and product diffusion. The article addresses a new generation of versatile hybrid organic-inorganic multi-site catalytic materials for their use in the production of (chiral) high-added-value products within the scope of chemicals and fine chemicals production. The use of those multi-reactive solids for more nanotechnological applications, such as sensors, due to the inclusion of electron donor-acceptor structural arrays is also considered, together with the adsorption-desorption capacities due to the combination of hydrophobic and hydrophilic sub-domains. The innovative structured hybrid materials for multipurpose processes here considered, can allow the development of multi-stage one-pot reactions with industrial applications, using the materials as one nanoreactor systems, favoring more sustainable production pathways with economic, environmental and energetic advantages.
利用结构功能纳米构建单元,设计在纳米、介观和宏观尺度上具有定制特性的新型杂化材料,以获得特定的多功能材料。构建具有选定功能的可控一维、二维和三维结构,是开发先进催化剂的关键,但使用传统合成方法很难实现这一点。使用预先形成的纳米结构,这些结构要么源自已知材料,要么通过特定的创新合成方法制备,在生成用于一锅法工艺的多活性位点催化材料方面具有巨大潜力。本文介绍了一种新的原型,其中自组装纳米结构构建单元是多功能催化剂设计的基础,这种催化剂将催化效率与快速的反应物和产物扩散相结合。本文探讨了新一代通用的有机 - 无机多活性位点催化材料,用于在化学品和精细化学品生产范围内生产(手性)高附加值产品。还考虑了由于包含电子供体 - 受体结构阵列,这些多反应性固体在更多纳米技术应用(如传感器)中的用途,以及由于疏水和亲水子域组合而产生的吸附 - 解吸能力。本文所考虑的用于多用途过程的创新结构化杂化材料,可以实现具有工业应用的多阶段一锅法反应,将这些材料用作一个纳米反应器系统,有利于形成具有经济、环境和能源优势的更可持续的生产途径。