Flexible electronics have a great potential to impact consumer electronics and with that our daily life. Currently, no direct growth of epitaxial functional oxides on commercially available flexible substrates is possible. In this study, in order to address this challenge, muscovite, a common layered oxide, is used as a flexible substrate that is chemically similar to typical functional oxides. We fabricated epitaxial MoO2 films on muscovite via pulsed laser deposition technique. A combination of X-ray diffraction and transmission electron microscopy confirms van der Waals epitaxy of the heterostructures. The electrical transport properties of MoO2 films are similar to those of the bulk. Flexible or free-standing MoO2 thin film can be obtai...
The push for electronic devices on smaller and smaller scales has driven research in the direction o...
The authors demonstrate multilayer epitaxial films by atomic layer deposition and postdeposition ann...
We propose that the crystallinity of two-dimensional (2D) materials is a crucial factor for achievin...
Journal ArticleWe report the growth of epitaxial molybdenum oxide (MoOx,2<x<2.75) films on c plane o...
We report on the large-scale synthesis of highly oriented ultrathin MoO3 layers using a simple and l...
The epitaxy of MoO2 on c-plane sapphire substrates is examined. A theoretical approach, based on den...
Molybdenum oxide thin films were deposited on stiff and flexible substrates by reactive DC magnetron...
Preparation of novel layered materials and engineering their composition and structure is fascinatin...
Thin-film metal oxide (MOx) semiconductors have opened the way to a new generation of electronics ba...
Coupling of two active semiconductors can easily lead to a deterioration of their intrinsic properti...
Similar to silicon-based semiconductor devices, van der Waals heterostructures require integration w...
Uniform growth of pristine two dimensional (2D) materials over large areas at lower temperatures wit...
Two-dimensional semiconductors such as MoS2 are an emerging material family with wide-ranging potent...
In this study, Mo(SxOy) thin films were deposited onto fluorine doped tin oxide (FTO) using pulsed e...
MoO3 is well known as efficient anode buffer layer in optoelectronic devices. Actually, MoO3 can be ...
The push for electronic devices on smaller and smaller scales has driven research in the direction o...
The authors demonstrate multilayer epitaxial films by atomic layer deposition and postdeposition ann...
We propose that the crystallinity of two-dimensional (2D) materials is a crucial factor for achievin...
Journal ArticleWe report the growth of epitaxial molybdenum oxide (MoOx,2<x<2.75) films on c plane o...
We report on the large-scale synthesis of highly oriented ultrathin MoO3 layers using a simple and l...
The epitaxy of MoO2 on c-plane sapphire substrates is examined. A theoretical approach, based on den...
Molybdenum oxide thin films were deposited on stiff and flexible substrates by reactive DC magnetron...
Preparation of novel layered materials and engineering their composition and structure is fascinatin...
Thin-film metal oxide (MOx) semiconductors have opened the way to a new generation of electronics ba...
Coupling of two active semiconductors can easily lead to a deterioration of their intrinsic properti...
Similar to silicon-based semiconductor devices, van der Waals heterostructures require integration w...
Uniform growth of pristine two dimensional (2D) materials over large areas at lower temperatures wit...
Two-dimensional semiconductors such as MoS2 are an emerging material family with wide-ranging potent...
In this study, Mo(SxOy) thin films were deposited onto fluorine doped tin oxide (FTO) using pulsed e...
MoO3 is well known as efficient anode buffer layer in optoelectronic devices. Actually, MoO3 can be ...
The push for electronic devices on smaller and smaller scales has driven research in the direction o...
The authors demonstrate multilayer epitaxial films by atomic layer deposition and postdeposition ann...
We propose that the crystallinity of two-dimensional (2D) materials is a crucial factor for achievin...