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Ideal optical contrast for 2D material observation using bi-layer antireflection absorbing substrates

机译:二维材料的理想光学对比观察使用双层防反射吸收基板

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The capability to observe 2D materials with optical microscopy techniques is of central importance in the development of the field and is a driving force for the assembly and study of 2D material van der Waals heterostructures. Such an observation of ultrathin materials usually benefits from antireflection conditions associated with the choice of a particular substrate geometry. The most common configuration uses a transparent oxide layer with a thickness minimizing light reflection at the air/substrate interface when light travels from air to the substrate. Backside Absorbing Layer Microscopy (BALM) is a newly proposed configuration in which light travels from glass to air (or another medium such as water or a solvent) and the antireflection layer is a light-absorbing material (typically a metal). We recently showed that this technique produces images of 2D materials with unprecedented contrast and can be ideally coupled to chemical and electrochemical experiments. Here, we show that contrast can be optimal using double-layer antireflection coatings. By following in situ and with sub-nm precision the controlled deposition of molecules, we notably establish precisely the ideal observation conditions for graphene oxide monolayers which represent one of the most challenging 2D material cases in terms of transparency and thickness. We also provide guidelines for the selection of antireflection coatings applicable to a large variety of nanomaterials. This work strengthens the potential of BALM as a generic, powerful and versatile technique for the study of molecular-scale materials and phenomena.
机译:观察二维材料的能力光学显微镜技术中心在该领域的发展和重要性的动力总成和2 d的研究范德瓦耳斯异质结构材料。通常的观察超薄材料受益于防反射条件与一个特定的选择底物几何学。用一个透明的氧化层厚度减少光反射在空气/衬底当光从空气传播到接口衬底。(香油)是一种新近提出的配置中光从空气玻璃(或另一个媒介例如水或溶剂)和增透层是一个吸光材料(通常是金属)。这种技术生产的2 d图像材料以前所未有的对比,可以理想的化学和电化学耦合实验。最佳使用双层防反射涂料。精度控制沉积的分子,我们主要是建立精确的理想石墨烯氧化物的观测条件单层膜的代表之一具有挑战性的情况下的二维材料透明度和厚度。增透的选择指南涂料适用于各种各样的纳米材料。乳香的潜力是一个通用的、强大的通用的技术研究个分子级材料和现象。

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