Low-temperature growth, as well as the transfer free growth on substrates, is the major concern of graphene research for its practical applications. Here we propose a simple method to achieve the transfer free graphene growth on SiO2 covered Si (SiO2/Si) substrate at 250 °C based on a solid-liquid-solid reaction. The key to this approach is the catalyst metal, which is not popular for graphene growth by chemical vapor deposition. A catalyst metal film of 500 nm thick was deposited onto an amorphous C (50 nm thick) coated SiO2/Si substrate. The sample was then annealed at 250 °C under vacuum condition. Raman spectra measured after the removal of the catalyst by chemical etching showed intense G and 2D peaks together with a small D and intens...
Metal-catalyst-free chemical vapor deposition (CVD) of large area uniform nanocrystalline graphene o...
Abstract The metal-free synthesis of graphene on single-crystal silicon substrates, the most common ...
Deposition of layers of graphene on silicon has the potential for a wide range of optoelectronic and...
AbstractHere we demonstrate the growth of transfer-free graphene on SiO2 insulator substrates from s...
AbstractHere we demonstrate the growth of transfer-free graphene on SiO2 insulator substrates from s...
Since the transfer process of graphene from a dedicated growth substrate to another substrate is pro...
Graphene films were prepared on SiO_2/Si substrate surface by thermal chemical vapor deposition (CVD...
International audienceThis study reports the comparative investigation of graphene films prepared on...
International audienceThis study reports the comparative investigation of graphene films prepared on...
Synthesizing graphene at a large-scale and of high quality on insulating substrate is a prerequisite...
The authors invented a method to fabricate graphene transistors on oxidized silicon wafers without t...
The transfer-free synthesis of high-quality, large-area graphene on a given dielectric substrate, wh...
Práce je zaměřena na přípravu grafenu s využitím tzv. bezpřenosové metody, která vychází ze struktur...
Large-area graphene films are best synthesized via chemical vapour and/or solid deposition methods a...
Large-area graphene films are best synthesized via chemical vapour and/or solid deposition methods a...
Metal-catalyst-free chemical vapor deposition (CVD) of large area uniform nanocrystalline graphene o...
Abstract The metal-free synthesis of graphene on single-crystal silicon substrates, the most common ...
Deposition of layers of graphene on silicon has the potential for a wide range of optoelectronic and...
AbstractHere we demonstrate the growth of transfer-free graphene on SiO2 insulator substrates from s...
AbstractHere we demonstrate the growth of transfer-free graphene on SiO2 insulator substrates from s...
Since the transfer process of graphene from a dedicated growth substrate to another substrate is pro...
Graphene films were prepared on SiO_2/Si substrate surface by thermal chemical vapor deposition (CVD...
International audienceThis study reports the comparative investigation of graphene films prepared on...
International audienceThis study reports the comparative investigation of graphene films prepared on...
Synthesizing graphene at a large-scale and of high quality on insulating substrate is a prerequisite...
The authors invented a method to fabricate graphene transistors on oxidized silicon wafers without t...
The transfer-free synthesis of high-quality, large-area graphene on a given dielectric substrate, wh...
Práce je zaměřena na přípravu grafenu s využitím tzv. bezpřenosové metody, která vychází ze struktur...
Large-area graphene films are best synthesized via chemical vapour and/or solid deposition methods a...
Large-area graphene films are best synthesized via chemical vapour and/or solid deposition methods a...
Metal-catalyst-free chemical vapor deposition (CVD) of large area uniform nanocrystalline graphene o...
Abstract The metal-free synthesis of graphene on single-crystal silicon substrates, the most common ...
Deposition of layers of graphene on silicon has the potential for a wide range of optoelectronic and...