Interplay of surface hydrophilicity and graphene transfer on SiO2/Si substrate: Implications for electrical conductivity and optical transparency

IF 3.2 3区 材料科学 Q2 ENGINEERING, CHEMICAL
Ahmed F. Abdelaal , Tahar Laoui , Ahmed Ibrahim , Billel Salhi , Mirza R. Akhter
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Abstract

Graphene, renowned for its exceptional transport properties, stands at the forefront of advanced material science, offering transformative possibilities for next-generation technological applications. Its versatility extends to a myriad of uses, from solar cells and flexible touch screens to gas detection sensors and sophisticated electronic devices. The core of harnessing graphene's full potential lies in perfecting the wet transfer process, a critical step that involves delicately transferring a graphene layer onto a target substrate, such as SiO2/Si. In this study, we investigate the enhancement of the graphene transfer process by examining the efficacy of three distinct substrate cleaning methods: hydrofluoric acid (HF), piranha solution (PS), and plasma treatment (PT). Our objective is to enhance the wettability of the SiO2/Si substrate, thereby reducing imperfections in the graphene layer post-transfer. Utilizing advanced characterization techniques such as atomic force microscopy, Raman spectroscopy, and optical microscopy, we comprehensively investigate the surface properties of both the SiO2/Si substrate and the graphene layer. Our findings reveal significant enhancements in substrate hydrophilicity following treatment with HF and PT. Specifically, we observe a substantial decrease in the water contact angle, decreasing from 85° in untreated samples to 5° and 15° in HF and PT-treated samples, respectively. Conspicuously, all cleaning methods contributed to minimizing defects in the transferred graphene layer. However, PT emerged as the superior method, demonstrating not only enhanced electrical conductivity but also maintaining commendable optical transparency. These findings are not just incremental improvements but a leap forward in the quest for manufacturing high-caliber graphene-based devices.

Abstract Image

二氧化硅/硅衬底表面亲水性和石墨烯转移的相互作用:对电导率和光学透明度的影响
石墨烯以其卓越的传输特性而闻名,站在先进材料科学的最前沿,为下一代技术应用提供了变革性的可能性。它的多功能性扩展到无数的用途,从太阳能电池和柔性触摸屏到气体检测传感器和复杂的电子设备。利用石墨烯的全部潜力的核心在于完善湿转移工艺,这是将石墨烯层精细地转移到目标衬底(如SiO2/Si)上的关键步骤。在这项研究中,我们通过考察三种不同的基材清洁方法:氢氟酸(HF)、食人鱼溶液(PS)和等离子体处理(PT)的效果来研究石墨烯转移过程的增强。我们的目标是提高SiO2/Si衬底的润湿性,从而减少转移后石墨烯层的缺陷。利用原子力显微镜、拉曼光谱和光学显微镜等先进的表征技术,我们全面研究了SiO2/Si衬底和石墨烯层的表面性质。我们的研究结果显示,经HF和PT处理后,底物的亲水性显著增强。具体而言,我们观察到水接触角大幅下降,未处理样品的水接触角分别从85°下降到5°和15°。值得注意的是,所有的清洁方法都有助于减少转移石墨烯层中的缺陷。然而,PT作为一种更优越的方法出现了,它不仅表现出了更高的导电性,而且还保持了令人称道的光学透明度。这些发现不仅是渐进式的改进,而且是制造高质量石墨烯器件的飞跃。
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来源期刊
International Journal of Adhesion and Adhesives
International Journal of Adhesion and Adhesives 工程技术-材料科学:综合
CiteScore
6.90
自引率
8.80%
发文量
200
审稿时长
8.3 months
期刊介绍: The International Journal of Adhesion and Adhesives draws together the many aspects of the science and technology of adhesive materials, from fundamental research and development work to industrial applications. Subject areas covered include: interfacial interactions, surface chemistry, methods of testing, accumulation of test data on physical and mechanical properties, environmental effects, new adhesive materials, sealants, design of bonded joints, and manufacturing technology.
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