Odziomek Mateusz, Thorimbert Fanny, Boissiere Cedric, Drisko Glenna L, Parola Stephane, Sanchez Clement, Faustini Marco
Sorbonne Université, CNRS, Collège de France, UMR 7574, Chimie de la Matière Condensée de Paris, Paris, F-75005, France.
Université de Paris, CNRS, UMR 7086, ITODYS, 15 rue J-A de Baïf, Paris, F-75013, France.
Adv Mater. 2022 Sep;34(36):e2204489. doi: 10.1002/adma.202204489. Epub 2022 Aug 4.
Solution-processed inorganic nanoporous films are key components for the vast spectrum of applications ranging from dew harvesting to solar cells. Shaping them into complex architectures required for advanced functionality often needs time-consuming or expensive fabrication. In this work, crack formation is harnessed to pattern porous inorganic films in a single step and without using lithography. Aqueous inks, containing inorganic precursors and polymeric latexes enable evaporation-induced, defect-free periodic arrays of cracks with tunable dimensions over several centimeters. The ink formulation strategy is generalized to more than ten inorganic materials including simple and binary porous oxide and metallic films covering a whole spectrum of properties including insulating, photocatalytic, electrocatalytic, conductive, or electrochromic materials. Notably, this approach enables 3D self-assembly of cracks by stacking several layers of different compositions, yielding periodic assemblies of polygonal shapes and Janus-type patterns. The crack patterned periodic arrays of nanoporous TiO diffract light, and are used as temperature-responsive diffraction grating sensors. More broadly, this method represents a unique example of a self-assembly process leading to long-range order (over several centimeters) in a robust and controlled way.
溶液处理的无机纳米多孔薄膜是从露水收集到太阳能电池等广泛应用中的关键组件。将它们制造成先进功能所需的复杂结构通常需要耗时或昂贵的制造工艺。在这项工作中,利用裂纹形成在一步中对多孔无机薄膜进行图案化,且无需使用光刻技术。含有无机前驱体和聚合物胶乳的水性油墨能够实现蒸发诱导的、无缺陷的周期性裂纹阵列,其尺寸在几厘米范围内可调。油墨配方策略被推广到十多种无机材料,包括简单和二元多孔氧化物以及金属薄膜,涵盖了包括绝缘、光催化、电催化、导电或电致变色材料在内的全谱性能。值得注意的是,这种方法通过堆叠几层不同组成的材料实现了裂纹的三维自组装,产生多边形形状和双面型图案的周期性组装。纳米多孔TiO的裂纹图案化周期性阵列能使光发生衍射,并被用作温度响应衍射光栅传感器。更广泛地说,这种方法代表了一种独特的自组装过程示例,能够以稳健且可控的方式实现长程有序(超过几厘米)。