具有近红外带隙和定制热学性能的印刷扭曲薄膜。

ACS Applied Optical Materials Pub Date : 2024-11-21 eCollection Date: 2024-12-27 DOI:10.1021/acsaom.4c00386
Botyo Dimitrov, Daria Bukharina, Valeriia Poliukhova, Dhriti Nepal, Michael E McConney, Timothy J Bunning, Vladimir V Tsukruk
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引用次数: 0

摘要

在这项工作中,通过基于叶片的3D打印方法,制备了具有预编程圆偏振和近红外反射的扭曲螺旋纤维素纳米晶体薄膜。薄膜是由纤维素纳米晶体单向组织而成的具有高双折射的纳米级板堆叠而成。通过改变印刷方向,我们获得了两种类型的薄膜:扭曲螺旋堆和各向异性布拉格堆。薄膜具有较高的透明度和清晰度,非手性各向异性布拉格叠加具有近红外光谱区反射率(1.3 ~ 1.4 μm)。相反,扭曲的螺旋膜表现出同时的左旋和右旋圆极化特性,而不是天然纤维素纳米晶体的左旋。我们观察到在可见光区域由于圆形布拉格反射而具有圆二色峰的双偏振特性,并认为圆偏振特性扩展到近红外区域。这些观察结果促使我们通过模拟来探索各向异性布拉格堆叠和连续螺旋薄膜之间的转变。我们证明了印刷的扭曲薄膜可以作为具有双螺旋度的光学超材料,并填补了已知光子结构之间的空白-传统的具有手性外观的连续手性向列材料和具有受控光子带隙的非手性布拉格堆栈。这些印刷的扭曲堆叠薄膜具有独特的各向异性纳米结构的大规模印刷有序的潜力,可用于圆偏振敏感的光子、热和能量管理应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Printed Twisted Thin Films with Near-Infrared Bandgaps and Tailored Chiroptical Properties.

In this work, twisted helical cellulose nanocrystals films with preprogrammed circular polarization and near-infrared reflectance are fabricated via a blade-based 3D printing method. The films are composed of stacked nanoscale slabs with high birefringence from unidirectionally organized cellulose nanocrystals. By changing the printing director, we achieved two types of films: twisted helical stacks and anisotropic Bragg stacks. These films are highly transparent and clear, and the achiral anisotropic Bragg stack shows near-infrared spectral region reflectance (1.3-1.4 μm). In contrast, the twisted helical films show concurrent left- and right-handed circularly polarized properties, as opposed to left-handed natural cellulose nanocrystals films. We observe dual chiroptical properties with circular dichroism peaks due to circular Bragg reflectance in the visible region and suggest that the circularly polarized properties are extended to the near-infrared region. These observations prompted us to explore the transition between anisotropic Bragg stacks and continuous helical films via simulations. We show that the printed twisted films can act as optical metamaterials with dual helicity and fill the gap between known photonic structures-the conventional continuous chiral nematic material with a chiroptical appearance and the achiral Bragg stack with a controlled photonic bandgap. These printed twisted stacked films hold the potential of larger-scale printed ordering of unique anisotropic nanostructures for circularly polarized-sensitive photonic, thermal, and energy management applications.

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来源期刊
ACS Applied Optical Materials
ACS Applied Optical Materials 材料科学-光学材料-
CiteScore
1.10
自引率
0.00%
发文量
0
期刊介绍: ACS Applied Optical Materials is an international and interdisciplinary forum to publish original experimental and theoretical including simulation and modeling research in optical materials complementing the ACS Applied Materials portfolio. With a focus on innovative applications ACS Applied Optical Materials also complements and expands the scope of existing ACS publications that focus on fundamental aspects of the interaction between light and matter in materials science including ACS Photonics Macromolecules Journal of Physical Chemistry C ACS Nano and Nano Letters.The scope of ACS Applied Optical Materials includes high quality research of an applied nature that integrates knowledge in materials science chemistry physics optical science and engineering.
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