功能性介孔材料的界面组装及其应用
Interfacial Assembly and Applications of Functional Mesoporous Materials.
作者信息
Duan Linlin, Wang Changyao, Zhang Wei, Ma Bing, Deng Yonghui, Li Wei, Zhao Dongyuan
机构信息
Department of Chemistry, Laboratory of Advanced Materials, Shanghai Key Lab of Molecular Catalysis and Innovative Materials, State Key Laboratory of Molecular Engineering of Polymers, Fudan University, Shanghai 200433, P.R. China.
出版信息
Chem Rev. 2021 Dec 8;121(23):14349-14429. doi: 10.1021/acs.chemrev.1c00236. Epub 2021 Oct 5.
Functional mesoporous materials have gained tremendous attention due to their distinctive properties and potential applications. In recent decades, the self-assembly of micelles and framework precursors into mesostructures on the liquid-solid, liquid-liquid, and gas-liquid interface has been explored in the construction of functional mesoporous materials with diverse compositions, morphologies, mesostructures, and pore sizes. Compared with the one-phase solution synthetic approach, the introduction of a two-phase interface in the synthetic system changes self-assembly behaviors between micelles and framework species, leading to the possibility for the on-demand fabrication of unique mesoporous architectures. In addition, controlling the interfacial tension is critical to manipulate the self-assembly process for precise synthesis. In particular, recent breakthroughs based on the concept of the "monomicelles" assembly mechanism are very promising and interesting for the synthesis of functional mesoporous materials with the precise control. In this review, we highlight the synthetic strategies, principles, and interface engineering at the macroscale, microscale, and nanoscale for oriented interfacial assembly of functional mesoporous materials over the past 10 years. The potential applications in various fields, including adsorption, separation, sensors, catalysis, energy storage, solar cells, and biomedicine, are discussed. Finally, we also propose the remaining challenges, possible directions, and opportunities in this field for the future outlook.
功能介孔材料因其独特的性质和潜在的应用而受到了极大的关注。近几十年来,在构建具有不同组成、形态、介观结构和孔径的功能介孔材料过程中,人们探索了胶束和骨架前驱体在液-固、液-液和气-液界面上自组装成介观结构的过程。与单相溶液合成方法相比,在合成体系中引入两相界面会改变胶束和骨架物种之间的自组装行为,从而使得按需制造独特的介孔结构成为可能。此外,控制界面张力对于精确合成时操纵自组装过程至关重要。特别是,基于“单胶束”组装机制概念的近期突破对于精确控制合成功能介孔材料而言非常有前景且有趣。在这篇综述中,我们重点介绍了过去十年中功能介孔材料定向界面组装在宏观、微观和纳米尺度上的合成策略、原理及界面工程。还讨论了其在吸附、分离、传感器、催化、能量存储、太阳能电池和生物医学等各个领域的潜在应用。最后,我们还针对该领域未来的展望提出了尚存的挑战、可能的方向和机遇。