Olla Chiara, Carbonaro Carlo Maria
Department of Physics, University of Cagliari, Cittadella Universitaria, I-09042 Monserrato, Italy.
J Phys Condens Matter. 2024 Mar 28;36(25). doi: 10.1088/1361-648X/ad3474.
Mesoporous silica stands out as a remarkable, low-density transparent material characterized by well-defined nanometric pore sizes. It is available in various morphologies, including monoliths, nanoparticles, and films. This material plays a pivotal role in numerous technological applications, both independently and as a component in hybrid composites, acting as a host for a diverse range of inorganic and organic materials. Among the synthetic routes, we accounted for the sol-gel method because of its large success in producing both nanoparticles and bulk mesoporous silica. This review focuses on exploring the optical properties of mesoporous silica and mesoporous silica-based composites, delving into how the huge void space within mesoporous silica can be harnessed across various fields: thermal and electrical insulations, photonics, environmental devices, or nanocargos for drugs and bioimaging. This comprehensive examination underscores the multifaceted potential of mesoporous silica, positioning it as a key player in the development of innovative solutions across various scientific domains.
介孔二氧化硅是一种卓越的低密度透明材料,其特征在于具有明确的纳米级孔径。它有多种形态,包括整体材料、纳米颗粒和薄膜。这种材料在众多技术应用中都起着关键作用,既可以单独使用,也可以作为混合复合材料的一个组分,作为多种无机和有机材料的载体。在合成路线中,我们考虑了溶胶 - 凝胶法,因为它在制备纳米颗粒和块状介孔二氧化硅方面都取得了巨大成功。本综述着重探讨介孔二氧化硅及介孔二氧化硅基复合材料的光学性质,深入研究如何在各个领域利用介孔二氧化硅内部巨大的空隙空间:热绝缘和电绝缘、光子学、环境装置,或用于药物和生物成像的纳米载体。这一全面的研究突显了介孔二氧化硅的多方面潜力,使其成为各个科学领域创新解决方案开发中的关键要素。