peer reviewedThe development of high-quality chemical vapor-deposited mono- and few-layer MoS2 is of high relevance for future applications in functional devices. Consequently, a detailed understanding of the growth mode and the parameters affecting it is important. Here, we show for the case of mono- and few-layer MoS2 grown on Muscovite mica, how strain and temperature impact the growth mode. We show how misleading the determination of the number of MoS2 layers is, solely based on Raman spectroscopy due to the occurrence of strain and changes in the growth mode. A combination of atomic force microscopy, Raman spectroscopy, and ab initio calculations reveal that that the growth at 500 dgree C synthesis temperature exhibits a strained layer...
Minor structural changes in transition metal dichalcogenides can have dramatic effects on their elec...
Monolayers of molybdenum disulphide MoS2, a two dimensional (2D) semiconductor with a direct band ga...
The growth of two-dimensional materials by low-cost atmospheric pressure chemical vapour deposition...
The development of high-quality chemical vapor-deposited mono- and few-layer MoS2 is of high relevan...
Monolayer molybdenum disulfide (MoS2) is a promising 2D material for nanoelectronic and optoelectron...
Two-dimensional materials such as transitional metal dichalcogenides exhibit unique optical and elec...
A controlled and eco-friendly, scalable CVD method for the production of single and few layer MoS2 c...
In this work, we report the impact of substrate type on the morphological and structural properties ...
ABSTRACT: Atmospheric-pressure chemical vapor deposi-tion (CVD) is used to grow monolayer MoS2 two-d...
Monolayer MoS2 has received special consideration owing to its intriguing properties and its potenti...
Monolayer molybdenum disulfide (MoS2), a two-dimensional (2D) crystal with a direct bandgap, is a pr...
When bulk structures are thinned down to their monolayers, degree of orbital interactions, mechanica...
Two-dimensional (2D) materials have become a hot topic in materials research since the successful is...
Molybdenum disulfide (MoS2) is back in the spotlight because of the indirect-to-direct bandgap tunab...
Molybdenum sulfide films were grown by atomic layer deposition on silicon and fused silica substrate...
Minor structural changes in transition metal dichalcogenides can have dramatic effects on their elec...
Monolayers of molybdenum disulphide MoS2, a two dimensional (2D) semiconductor with a direct band ga...
The growth of two-dimensional materials by low-cost atmospheric pressure chemical vapour deposition...
The development of high-quality chemical vapor-deposited mono- and few-layer MoS2 is of high relevan...
Monolayer molybdenum disulfide (MoS2) is a promising 2D material for nanoelectronic and optoelectron...
Two-dimensional materials such as transitional metal dichalcogenides exhibit unique optical and elec...
A controlled and eco-friendly, scalable CVD method for the production of single and few layer MoS2 c...
In this work, we report the impact of substrate type on the morphological and structural properties ...
ABSTRACT: Atmospheric-pressure chemical vapor deposi-tion (CVD) is used to grow monolayer MoS2 two-d...
Monolayer MoS2 has received special consideration owing to its intriguing properties and its potenti...
Monolayer molybdenum disulfide (MoS2), a two-dimensional (2D) crystal with a direct bandgap, is a pr...
When bulk structures are thinned down to their monolayers, degree of orbital interactions, mechanica...
Two-dimensional (2D) materials have become a hot topic in materials research since the successful is...
Molybdenum disulfide (MoS2) is back in the spotlight because of the indirect-to-direct bandgap tunab...
Molybdenum sulfide films were grown by atomic layer deposition on silicon and fused silica substrate...
Minor structural changes in transition metal dichalcogenides can have dramatic effects on their elec...
Monolayers of molybdenum disulphide MoS2, a two dimensional (2D) semiconductor with a direct band ga...
The growth of two-dimensional materials by low-cost atmospheric pressure chemical vapour deposition...