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利用金属键合制备氧化石墨烯薄膜的微观图案

Micro-Pattern of Graphene Oxide Films Using Metal Bonding.

作者信息

Abunahla Heba, Alamoodi Nahla, Alazzam Anas, Mohammad Baker

机构信息

System-on-Chip Center, Electrical and Computer Engineering Department, Khalifa University of Science and Technology, Abu Dhabi 127788, UAE.

Research and Innovation Center on CO2 and H2 (RICH), Center of Catalysis and Separation (CeCaS), Chemical Engineering Department, Khalifa University of Science and Technology, Abu Dhabi 127788, UAE.

出版信息

Micromachines (Basel). 2020 Apr 10;11(4):399. doi: 10.3390/mi11040399.

Abstract

Recently, graphene has been explored in several research areas according to its outstanding combination of mechanical and electrical features. The ability to fabricate micro-patterns of graphene facilitates its integration in emerging technologies such as flexible electronics. This work reports a novel micro-pattern approach of graphene oxide (GO) film on a polymer substrate using metal bonding. It is shown that adding ethanol to the GO aqueous dispersion enhances substantially the uniformity of GO thin film deposition, which is a great asset for mass production. On the other hand, the presence of ethanol in the GO solution hinders the fabrication of patterned GO films using the standard lift-off process. To overcome this, the fabrication process provided in this work takes advantage of the chemical adhesion between the GO or reduced GO (rGO) and metal films. It is proved that the adhesion between the metal layer and GO or rGO is stronger than the adhesion between the latter and the polymer substrate (i.e., cyclic olefin copolymer used in this work). This causes the removal of the GO layer underneath the metal film during the lift-off process, leaving behind the desired GO or rGO micro-patterns. The feasibility and suitability of the proposed pattern technique is confirmed by fabricating the patterned electrodes inside a microfluidic device to manipulate living cells using dielectrophoresis. This work adds great value to micro-pattern GO and rGO thin films and has immense potential to achieve high yield production in emerging applications.

摘要

最近,石墨烯因其卓越的机械和电学特性组合而在多个研究领域得到探索。制造石墨烯微图案的能力促进了其在诸如柔性电子等新兴技术中的集成。这项工作报道了一种利用金属键合在聚合物基板上制备氧化石墨烯(GO)薄膜的新型微图案方法。结果表明,向GO水分散体中添加乙醇可显著提高GO薄膜沉积的均匀性,这对于大规模生产来说是一项巨大优势。另一方面,GO溶液中乙醇的存在阻碍了使用标准剥离工艺制造图案化的GO薄膜。为克服这一问题,本工作中提供的制造工艺利用了GO或还原氧化石墨烯(rGO)与金属薄膜之间的化学附着力。事实证明,金属层与GO或rGO之间的附着力强于后者与聚合物基板(即本工作中使用的环烯烃共聚物)之间的附着力。这使得在剥离过程中金属薄膜下方的GO层被去除,从而留下所需的GO或rGO微图案。通过在微流控装置内制造图案化电极以利用介电泳操纵活细胞,证实了所提出的图案技术的可行性和适用性。这项工作为微图案化的GO和rGO薄膜增添了巨大价值,并在新兴应用中实现高产率生产方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a276/7231371/438d3d463d0e/micromachines-11-00399-g001.jpg

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