Reproducible dry and wet transfer techniques were developed to improve the transfer of large-area monolayer graphene grown on copper foils by chemical vapor deposition (CVD). The techniques reported here allow transfer onto three different classes of substrates: substrates covered with shallow depressions, perforated substrates, and flat substrates. A novel dry, transfer technique was used to make graphene-sealed microchambers without trapping-liquid inside. The dry transfer technique utilizes a polydimethylsiloxane frame that attaches to the poly(methyl methacrylate) spun over the graphene film, and the monolayer graphene was transferred onto shallow depressions with 300 nm depth. The improved wet transfer onto perforated substrates with 2...
A new method for transferring chemical vapor deposition (CVD)-grown monolayer graphene to a variety ...
The polymer-supported wet transfer of chemical vapor deposition-grown graphene provides high-quality...
Growth of large-scale patterned, wrinkle-free graphene and the gentle transfer technique without fur...
In this work, we report the transfer of graphene onto eight commercial microfiltration substrates ha...
This paper presents the results of experiments such as the synthesis of graphene layers by CVD metho...
Graphene produced by chemical vapor deposition finds applications in a wide range of technologies. H...
A new method for transferring chemical vapor deposition (CVD)-grown monolayer graphene to a variety ...
Graphene has sparked a great deal of interest in the microelectronics field since the discovery of i...
In this paper we explore the direct transfer via lamination of chemical vapor deposition graphene on...
We present the results of a thorough study of wet chemical methods for transferring chemical vapor d...
Chemical vapour deposition (CVD) is emerging as a popular method for growing large-area graphene on ...
The self-supporting monolayer material which is graphene has excited enormous interest over the ten ...
Growth of large-scale patterned, wrinkle-free graphene and the gentle transfer technique without fur...
We demonstrate the direct dry transfer of large area chemical vapor deposition graphene to several p...
Graphene, an atomically thin material, has unique electrical, mechanical, and optical properties tha...
A new method for transferring chemical vapor deposition (CVD)-grown monolayer graphene to a variety ...
The polymer-supported wet transfer of chemical vapor deposition-grown graphene provides high-quality...
Growth of large-scale patterned, wrinkle-free graphene and the gentle transfer technique without fur...
In this work, we report the transfer of graphene onto eight commercial microfiltration substrates ha...
This paper presents the results of experiments such as the synthesis of graphene layers by CVD metho...
Graphene produced by chemical vapor deposition finds applications in a wide range of technologies. H...
A new method for transferring chemical vapor deposition (CVD)-grown monolayer graphene to a variety ...
Graphene has sparked a great deal of interest in the microelectronics field since the discovery of i...
In this paper we explore the direct transfer via lamination of chemical vapor deposition graphene on...
We present the results of a thorough study of wet chemical methods for transferring chemical vapor d...
Chemical vapour deposition (CVD) is emerging as a popular method for growing large-area graphene on ...
The self-supporting monolayer material which is graphene has excited enormous interest over the ten ...
Growth of large-scale patterned, wrinkle-free graphene and the gentle transfer technique without fur...
We demonstrate the direct dry transfer of large area chemical vapor deposition graphene to several p...
Graphene, an atomically thin material, has unique electrical, mechanical, and optical properties tha...
A new method for transferring chemical vapor deposition (CVD)-grown monolayer graphene to a variety ...
The polymer-supported wet transfer of chemical vapor deposition-grown graphene provides high-quality...
Growth of large-scale patterned, wrinkle-free graphene and the gentle transfer technique without fur...