Kafiah Feras, Khan Zafarullah, Ibrahim Ahmed, Atieh Muataz, Laoui Tahar
Department of Mechanical Engineering, King Fahd University of Petroleum & Minerals, Dhahran 31261, Saudi Arabia.
Department of Mechanical Design and Production Engineering, Zagazig University, Zagazig 44519, Egypt.
Materials (Basel). 2017 Jan 21;10(1):86. doi: 10.3390/ma10010086.
In this work, we report the transfer of graphene onto eight commercial microfiltration substrates having different pore sizes and surface characteristics. Monolayer graphene grown on copper by the chemical vapor deposition (CVD) process was transferred by the pressing method over the target substrates, followed by wet etching of copper to obtain monolayer graphene/polymer membranes. Scanning electron microscopy (SEM), atomic force microscopy (AFM), and contact angle (CA) measurements were carried out to explore the graphene layer transferability. Three factors, namely, the substrate roughness, its pore size, and its surface wetting (degree of hydrophobicity) are found to affect the conformality and coverage of the transferred graphene monolayer on the substrate surface. A good quality graphene transfer is achieved on the substrate with the following characteristics; being hydrophobic (CA > 90°), having small pore size, and low surface roughness, with a CA to RMS (root mean square) ratio higher than 2.7°/nm.
在这项工作中,我们报告了将石墨烯转移到八种具有不同孔径和表面特性的商用微滤基材上的过程。通过化学气相沉积(CVD)工艺在铜上生长的单层石墨烯通过压制方法转移到目标基材上,随后对铜进行湿法蚀刻以获得单层石墨烯/聚合物膜。进行扫描电子显微镜(SEM)、原子力显微镜(AFM)和接触角(CA)测量以探究石墨烯层的转移能力。发现三个因素,即基材粗糙度、孔径及其表面润湿性(疏水性程度)会影响转移的石墨烯单层在基材表面的保形性和覆盖率。在具有以下特性的基材上可实现高质量的石墨烯转移:疏水(CA>90°)、孔径小且表面粗糙度低,CA与均方根(RMS)的比值高于2.7°/nm。