Gentili Denis, Cavallini Massimiliano
Istituto per lo Studio dei Materiali Nanostrutturati (ISMN), Consiglio Nazionale delle Ricerche (CNR), Via P. Gobetti 101, 40129, Bologna, IT.
Chemistry. 2024 Jul 16;30(40):e202401219. doi: 10.1002/chem.202401219. Epub 2024 May 22.
Patterning offers an efficient way to quantitatively enhance and enlarge material properties and functionalities, offering unprecedented opportunities for innovation in various scientific domains. By precisely controlling the spatial arrangement of materials at the micro- and nanoscale, patterning enables the exploitation of inherent material properties in novel ways. In addition, it generates new properties, leading to the development of advanced devices and applications. This article highlights the significant contributions of spatially controlled patterning in chemistry, particularly in generating new functional properties and devices, discussing some representative articles. Examples include the use of unconventional patterning techniques for surface functionalization, as well as the application of spatial confinement in improving material properties and controlling crystallization processes. Furthermore, the discussion extends to creating new devices, such as optical storage media and sensors, through spatial organization of materials.
图案化提供了一种有效方法来定量增强和扩大材料的性能及功能,为各个科学领域的创新带来了前所未有的机遇。通过在微米和纳米尺度精确控制材料的空间排列,图案化能够以新颖方式利用材料的固有特性。此外,它还能产生新的特性,推动先进器件和应用的发展。本文重点介绍空间控制图案化在化学领域的重大贡献,特别是在产生新的功能特性和器件方面,并讨论一些具有代表性的文章。示例包括使用非常规图案化技术进行表面功能化,以及应用空间限制来改善材料性能和控制结晶过程。此外,讨论还扩展到通过材料的空间组织创建新器件,如光存储介质和传感器。