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发现石墨烯-水膜结构:迈向高质量石墨烯工艺。

Discovery of Graphene-Water Membrane Structure: Toward High-Quality Graphene Process.

机构信息

Department of Physics and Astronomy, Georgia State University, Atlanta, GA, 30303, USA.

Department of Physics, Jazan University, Jazan, 45142, Saudi Arabia.

出版信息

Adv Sci (Weinh). 2022 Sep;9(26):e2201336. doi: 10.1002/advs.202201336. Epub 2022 Jul 18.

Abstract

It is widely accepted that solid-state membranes are indispensable media for the graphene process, particularly transfer procedures. But these membranes inevitably bring contaminations and residues to the transferred graphene and consequently compromise the material quality. This study reports a newly observed free-standing graphene-water membrane structure, which replaces the conventional solid-state supporting media with liquid film to sustain the graphene integrity and continuity. Experimental observation, theoretical model, and molecular dynamics simulations consistently indicate that the high surface tension of pure water and its large contact angle with graphene are essential factors for forming such a membrane structure. More interestingly, water surface tension ensures the flatness of graphene layers and renders high transfer quality on many types of target substrates. This report enriches the understanding of the interactions on reduced dimensional material while rendering an alternative approach for scalable layered material processing with ensured quality for advanced manufacturing.

摘要

人们普遍认为,固态膜对于石墨烯的加工过程,特别是转移过程来说是不可或缺的媒介。但这些膜不可避免地会给转移后的石墨烯带来污染和残留物,从而影响材料质量。本研究报告了一种新观察到的自支撑石墨烯-水膜结构,它用液膜代替传统的固态支撑介质来维持石墨烯的完整性和连续性。实验观察、理论模型和分子动力学模拟一致表明,纯水的高表面张力及其与石墨烯的大接触角是形成这种膜结构的重要因素。更有趣的是,水的表面张力确保了石墨烯层的平整度,并在许多类型的目标衬底上实现了高质量的转移。本报告丰富了对低维材料相互作用的认识,同时为先进制造提供了一种具有质量保证的可扩展层状材料加工方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9917/9475541/e4f314a4f6d7/ADVS-9-2201336-g003.jpg

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