The remote epitaxy of GaN epilayers on GaN/sapphire templates was studied by using different graphene interlayer types. Monolayer, bilayer, double-stack of monolayer, and triple-stack of monolayer graphenes were transferred onto GaN/sapphire templates using a wet transfer technique. The quality of the graphene interlayers was examined by Raman spectroscopy. The impact of the interlayer type on GaN nucleation was analyzed by scanning electron microscopy. The graphene interface and structural quality of GaN epilayers were studied by transmission electron microscopy and X-ray diffraction, respectively. The influence of the graphene interlayer type is discussed in terms of the differences between remote epitaxy and van der Waals epitaxy. The su...
This diploma thesis deals with preparation of graphene samples for depositions of ultrathin layers o...
GaN layers of 280 nm thick were grown on sapphire, silicon (1 1 1) and GaN template by plasma assist...
GaN layers of 280 nm thick were grown on sapphire, silicon (1 1 1) and GaN template by plasma assist...
In this study, GaN epitaxial layers were successfully deposited on a multilayer graphene (MLG) by us...
Today, state-of-the-art III-Ns technology has been focused on the growth of c-plane nitrides by meta...
Single-layer (SLG)/few-layer (FLG) and multilayer graphene (MLG) (>15 layers) samples were obtained ...
Remote epitaxy via graphene has acquired much attention because of its potential for epi-layer mecha...
The implementation of graphene layers in gallium nitride (GaN) heterostructure growth can solve self...
The implementation of graphene layers in gallium nitride (GaN) heterostructure growth can solve self...
The self catalyzed growth of vertically aligned and hexagonally shaped GaN micro and nanorods on gr...
The self catalyzed growth of vertically aligned and hexagonally shaped GaN micro and nanorods on gr...
The self catalyzed growth of vertically aligned and hexagonally shaped GaN micro and nanorods on gr...
The self-catalyzed growth of vertically aligned and hexagonally shaped GaN micro- and nanorods on gr...
The self-catalyzed growth of vertically aligned and hexagonally shaped GaN micro- and nanorods on gr...
We demonstrate an all-epitaxial and scalable growth approach to fabricate single-crystalline GaN nan...
This diploma thesis deals with preparation of graphene samples for depositions of ultrathin layers o...
GaN layers of 280 nm thick were grown on sapphire, silicon (1 1 1) and GaN template by plasma assist...
GaN layers of 280 nm thick were grown on sapphire, silicon (1 1 1) and GaN template by plasma assist...
In this study, GaN epitaxial layers were successfully deposited on a multilayer graphene (MLG) by us...
Today, state-of-the-art III-Ns technology has been focused on the growth of c-plane nitrides by meta...
Single-layer (SLG)/few-layer (FLG) and multilayer graphene (MLG) (>15 layers) samples were obtained ...
Remote epitaxy via graphene has acquired much attention because of its potential for epi-layer mecha...
The implementation of graphene layers in gallium nitride (GaN) heterostructure growth can solve self...
The implementation of graphene layers in gallium nitride (GaN) heterostructure growth can solve self...
The self catalyzed growth of vertically aligned and hexagonally shaped GaN micro and nanorods on gr...
The self catalyzed growth of vertically aligned and hexagonally shaped GaN micro and nanorods on gr...
The self catalyzed growth of vertically aligned and hexagonally shaped GaN micro and nanorods on gr...
The self-catalyzed growth of vertically aligned and hexagonally shaped GaN micro- and nanorods on gr...
The self-catalyzed growth of vertically aligned and hexagonally shaped GaN micro- and nanorods on gr...
We demonstrate an all-epitaxial and scalable growth approach to fabricate single-crystalline GaN nan...
This diploma thesis deals with preparation of graphene samples for depositions of ultrathin layers o...
GaN layers of 280 nm thick were grown on sapphire, silicon (1 1 1) and GaN template by plasma assist...
GaN layers of 280 nm thick were grown on sapphire, silicon (1 1 1) and GaN template by plasma assist...