We study the interactions in graphene/WS2 2D layered vertical heterostructures with variations in the areal coverage of graphene by the WS2. All 2D materials were grown by chemical vapour deposition and transferred layer by layer. Photoluminescence (PL) spectroscopy of WS2 on graphene showed PL quenching along with an increase in the ratio of exciton/trion emission, relative to WS2 on SiO2 surface, indicating a reduction in the n-type doping levels of WS2 as well as reduced radiative recombination quantum yield. Electrical measurements of a total of 220 graphene field effect transistors with different WS2 coverage showed double-Dirac points in the field effect measurements, where one is shifted closer towards the 0V gate neutrality position...
We show that reducing the degree of van der Waals overlapping in all 2D ultrathin lateral devices co...
Van der Waals heterostructures (vdWHSs) provide a unique playground to study fundamental physics and...
Atomically thin vertical heterostructures are promising candidates for optoelectronic applications, ...
We study the interactions in graphene/WS2 2D layered vertical heterostructures with variations in th...
We study the interactions in graphene/WS<sub>2</sub> two-dimensional (2D) layered vertical heterostr...
Two dimensional (2D) crystals including graphene and monolayer transition metal dichalcogenides (TMD...
Two dimensional (2D) crystals including graphene and monolayer transition metal dichalcogenides (TMD...
Two dimensional (2D) materials bear a lot of expectations on playing important role in next generati...
In this thesis, field effect transistors (FETs), tunnel barrier transistors (TBTs), and photodetecto...
The production of large area, high quality two-dimensional (2D) materials using chemical vapour depo...
Creating alternating layers of 2D materials forms vertical heterostructures with diverse electronic ...
The discovery of graphene has so far drawn significant attentions since 2004 when isolation of singl...
Creating alternating layers of 2D materials forms vertical heterostructures with diverse electronic ...
Large-area two-dimensional (2D) heterojunctions are promising building blocks of 2D circuits. Unders...
We show that reducing the degree of van der Waals overlapping in all 2D ultrathin lateral devices co...
We show that reducing the degree of van der Waals overlapping in all 2D ultrathin lateral devices co...
Van der Waals heterostructures (vdWHSs) provide a unique playground to study fundamental physics and...
Atomically thin vertical heterostructures are promising candidates for optoelectronic applications, ...
We study the interactions in graphene/WS2 2D layered vertical heterostructures with variations in th...
We study the interactions in graphene/WS<sub>2</sub> two-dimensional (2D) layered vertical heterostr...
Two dimensional (2D) crystals including graphene and monolayer transition metal dichalcogenides (TMD...
Two dimensional (2D) crystals including graphene and monolayer transition metal dichalcogenides (TMD...
Two dimensional (2D) materials bear a lot of expectations on playing important role in next generati...
In this thesis, field effect transistors (FETs), tunnel barrier transistors (TBTs), and photodetecto...
The production of large area, high quality two-dimensional (2D) materials using chemical vapour depo...
Creating alternating layers of 2D materials forms vertical heterostructures with diverse electronic ...
The discovery of graphene has so far drawn significant attentions since 2004 when isolation of singl...
Creating alternating layers of 2D materials forms vertical heterostructures with diverse electronic ...
Large-area two-dimensional (2D) heterojunctions are promising building blocks of 2D circuits. Unders...
We show that reducing the degree of van der Waals overlapping in all 2D ultrathin lateral devices co...
We show that reducing the degree of van der Waals overlapping in all 2D ultrathin lateral devices co...
Van der Waals heterostructures (vdWHSs) provide a unique playground to study fundamental physics and...
Atomically thin vertical heterostructures are promising candidates for optoelectronic applications, ...