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Mesoscopic transport in 2D materials and heterostructures
Nikos Papadopoulos
QRD/Goswami Lab
QN/Steele Lab
Research output
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Thesis
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Dissertation (TU Delft)
107
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Dive into the research topics of 'Mesoscopic transport in 2D materials and heterostructures'. Together they form a unique fingerprint.
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Chemistry
Molybdenum Sulfide
100%
Two-Dimensional Material
100%
Boron Nitride
66%
Device
66%
Ground State
33%
Electronic Property
33%
Electronic Band Structure
33%
Dielectric Material
33%
Monolayer
33%
Metal
33%
Charge Density Wave
33%
Spin-Orbit Coupling
33%
Excited State
33%
Transition Element
33%
Group
33%
Reaction Mechanism
33%
Reaction Temperature
33%
Charge Transfer
33%
Particle Size
33%
Spin Relaxation
33%
Material Science
Heterojunction
100%
Boron Nitride
66%
Graphene
66%
Devices
66%
Electronics
33%
Temperature
33%
Density
33%
Transition Metal Dichalcogenide
33%
Metal
33%
Electronic Property
33%
Dielectric Material
33%
Carrier Transport
33%
Monolayers
33%
INIS
two-dimensional systems
100%
transport
100%
van der waals forces
37%
carriers
25%
tunneling
25%
graphene
25%
devices
25%
boron nitrides
25%
magnetic moments
12%
l-s coupling
12%
excited states
12%
gain
12%
low temperature
12%
ground states
12%
charge density
12%
transition metals
12%
metals
12%
information
12%
relaxation
12%
spin
12%
electric contacts
12%
dielectrics
12%
physics
12%
barriers
12%
environment
12%
size
12%