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High quality 2D crystals made by anodic bonding: A general technique for layered materials

机译:阳极键合制成的高质量2D晶体:层状材料的通用技术

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摘要

Anodic bonding of nanolayers is an easy technique based on a simple apparatus, which has already proven successful in application in the fabrication of high quality graphene. Here we demonstrate its extension to the fabrication of high quality nanolayers from several layered materials. The strengths of this technique are its high throughput rate and ease of application. All fabrication parameters are controllable and need to be determined carefully. We report optimal parameters found for nine layered materials. In general, using optimal parameters results in high quality 2D layers, in most cases much larger than those obtained by 'Scotch tape' microcleavage, with higher yields and which are easily transferable to other substrates. Moreover the samples obtained are clean and the good optical contrast of these layers on the glass substrate makes their identification very easy. This is thus the technique of choice for making nanolayers in the laboratory from any layered material.
机译:纳米层的阳极键合是一种基于简单设备的简便技术,该技术已被证明可成功用于制造高质量石墨烯。在这里,我们展示了其扩展到由几种层状材料制造高质量纳米层的能力。该技术的优势在于其高吞吐率和易于应用。所有制造参数都是可控制的,需要仔细确定。我们报告找到九种分层材料的最佳参数。通常,使用最佳参数可产生高质量的2D层,在大多数情况下,其厚度要比“透明胶带”微切割所获得的2D层大得多,且具有较高的产量,并且易于转移到其他基材上。此外,所获得的样品是干净的,并且玻璃基板上这些层的良好光学对比使它们的识别非常容易。因此,这是在实验室中由任何层状材料制成纳米层的首选技术。

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