Bertucci Simone, Megahd Heba, Dodero Andrea, Fiorito Sergio, Di Stasio Francesco, Patrini Maddalena, Comoretto Davide, Lova Paola
Dipartimento di Chimica e Chimica Industriale, Università degli Studi di Genova, Via Dodecaneso 31, Genova 16145, Italy.
Photonic Nanomaterials, Istituto Italiano di Tecnologia, Via Morego 30, Genova 16163, Italy.
ACS Appl Mater Interfaces. 2022 May 4;14(17):19806-19817. doi: 10.1021/acsami.1c23653. Epub 2022 Apr 20.
Solution processing of highly performing photonic crystals has been a towering ambition for making them technologically relevant in applications requiring mass and large-area production. It would indeed represent a paradigm changer for the fabrication of sensors and for light management nanostructures meant for photonics and advanced photocatalytic systems. On the other hand, solution-processed structures often suffer from low dielectric contrast and poor optical quality or require complex deposition procedures due to the intrinsic properties of components treatable from solution. This work reports on a low-temperature sol-gel route between the alkoxides of Si and Ti and poly(acrylic acid), leading to stable polymer-inorganic hybrid materials with tunable refractive index and, in the case of titania hybrid, photoactive properties. Alternating thin films of the two hybrids allows planar photonic crystals with high optical quality and dielectric contrast as large as 0.64. Moreover, low-temperature treatments also allow coupling the titania hybrids with several temperature-sensitive materials including dielectric and semiconducting polymers to fabricate photonic structures. These findings open new perspectives in several fields; preliminary results demonstrate that the hybrid structures are suitable for sensing and the enhancement of the catalytic activity of photoactive media and light emission control.
高性能光子晶体的溶液加工一直是一个远大目标,旨在使其在需要大规模和大面积生产的应用中具有技术相关性。这确实将代表传感器制造以及用于光子学和先进光催化系统的光管理纳米结构制造的范式转变。另一方面,由于可从溶液中处理的组分的固有特性,溶液处理的结构通常存在低介电对比度和光学质量差的问题,或者需要复杂的沉积程序。这项工作报道了一种在硅和钛的醇盐与聚丙烯酸之间的低温溶胶 - 凝胶路线,可得到具有可调折射率的稳定聚合物 - 无机杂化材料,对于二氧化钛杂化物而言,还具有光活性。两种杂化物的交替薄膜可形成具有高光学质量和高达0.64的介电对比度的平面光子晶体。此外,低温处理还允许将二氧化钛杂化物与包括介电和半导体聚合物在内的几种温度敏感材料耦合,以制造光子结构。这些发现为多个领域开辟了新的前景;初步结果表明,杂化结构适用于传感以及增强光活性介质的催化活性和光发射控制。