Leader
|
|
|
00000nz a2200037n 45 0 |
001
|
|
|
WKP|Q60290697
(VIAF cluster)
(Authority/Source Record)
|
003
|
|
|
WKP |
005
|
|
|
20241221010728.0 |
008
|
|
|
241221nneanz||abbn n and d |
035
|
|
|
‡a
(WKP)Q60290697
|
024
|
|
|
‡a
0000-0001-9237-4584
‡2
orcid
|
024
|
|
|
‡a
56866139500
‡2
scopus
|
035
|
|
|
‡a
(OCoLC)Q60290697
|
100
|
0 |
|
‡a
Miguel Muñoz Rojo
‡c
researcher ORCID ID = 0000-0001-9237-4584
‡9
en
|
375
|
|
|
‡a
1
‡2
iso5218
|
400
|
0 |
|
‡a
Miguel Muñoz Rojo
‡c
wetenschapper
‡9
nl
|
670
|
|
|
‡a
Author's Anisotropic Effects on the Thermoelectric Properties of Highly Oriented Electrodeposited Bi2Te3 Films
|
670
|
|
|
‡a
Author's Correction: Decrease in thermal conductivity in polymeric P3HT nanowires by size-reduction induced by crystal orientation: new approaches towards thermal transport engineering of organic materials
|
670
|
|
|
‡a
Author's Energy Dissipation in Monolayer MoS2 Electronics.
|
670
|
|
|
‡a
Author's High electrical conductivity in out of plane direction of electrodeposited Bi2Te3 films
|
670
|
|
|
‡a
Author's Highly Efficient Antimicrobial Ceramics Based on Electrically Charged Interfaces
|
670
|
|
|
‡a
Author's Localized Heating and Switching in MoTe2-Based Resistive Memory Devices
|
670
|
|
|
‡a
Author's Localized Triggering of the Insulator-Metal Transition in VO2 Using a Single Carbon Nanotube
|
670
|
|
|
‡a
Author's Low thermal conductivity and improved thermoelectric performance of nanocrystalline silicon germanium films by sputtering
|
670
|
|
|
‡a
Author's Low Variability in Synthetic Monolayer MoS2 Devices.
|
670
|
|
|
‡a
Author's Monolithic mtesla-level magnetic induction by self-rolled-up membrane technology
|
670
|
|
|
‡a
Author's Quantitative nanoscale surface voltage measurement on organic semiconductor blends
|
670
|
|
|
‡a
Author's Significant Phonon Drag Enables High Power Factor in the AlGaN/GaN Two-Dimensional Electron Gas
|
670
|
|
|
‡a
Author's Spatial potential ripples of azimuthal surface modes in topological insulator Bi2Te3 nanowires
|
670
|
|
|
‡a
Author's Spatially Resolved Thermometry of Resistive Memory Devices.
|
670
|
|
|
‡a
Author's Thermal conductivity measurements of high and low thermal conductivity films using a scanning hot probe method in the 3ω mode and novel calibration strategies.
|
670
|
|
|
‡a
Author's Thermal conductivity of Bi2Te3 nanowires: how size affects phonon scattering.
|
670
|
|
|
‡a
Author's Ultra-low thermal conductivities in large-area Si-Ge nanomeshes for thermoelectric applications
|
670
|
|
|
‡a
Author's Ultrahigh thermal isolation across heterogeneously layered two-dimensional materials
|
909
|
|
|
‡a
(orcid) 0000000192374584
‡9
1
|
909
|
|
|
‡a
(scopus) 56866139500
‡9
1
|
919
|
|
|
‡a
anisotropiceffectsonthethermoelectricpropertiesofhighlyorientedelectrodepositedbi2te3films
‡A
Anisotropic Effects on the Thermoelectric Properties of Highly Oriented Electrodeposited Bi2Te3 Films
‡9
1
|
919
|
|
|
‡a
correctiondecreaseinthermalconductivityinpolymericp3htnanowiresbysizereductioninducedbycrystalorientationnewapproachestowardsthermaltransportengineeringoforganicmaterials
‡A
Correction: Decrease in thermal conductivity in polymeric P3HT nanowires by size-reduction induced by crystal orientation: new approaches towards thermal transport engineering of organic materials
‡9
1
|
919
|
|
|
‡a
energydissipationinmonolayermos2electronics
‡A
Energy Dissipation in Monolayer MoS2 Electronics.
‡9
1
|
919
|
|
|
‡a
highelectricalconductivityinoutofplanedirectionofelectrodepositedbi2te3films
‡A
High electrical conductivity in out of plane direction of electrodeposited Bi2Te3 films
‡9
1
|
919
|
|
|
‡a
highlyefficientantimicrobialceramicsbasedonelectricallychargedinterfaces
‡A
Highly Efficient Antimicrobial Ceramics Based on Electrically Charged Interfaces
‡9
1
|
919
|
|
|
‡a
localizedheatingandswitchinginmote2basedresistivememorydevices
‡A
Localized Heating and Switching in MoTe2-Based Resistive Memory Devices
‡9
1
|
919
|
|
|
‡a
localizedtriggeringoftheinsulatormetaltransitioninvo2usingasinglecarbonnanotube
‡A
Localized Triggering of the Insulator-Metal Transition in VO2 Using a Single Carbon Nanotube
‡9
1
|
919
|
|
|
‡a
lowthermalconductivityandimprovedthermoelectricperformanceofnanocrystallinesilicongermaniumfilmsbysputtering
‡A
Low thermal conductivity and improved thermoelectric performance of nanocrystalline silicon germanium films by sputtering
‡9
1
|
919
|
|
|
‡a
lowvariabilityinsyntheticmonolayermos2devices
‡A
Low Variability in Synthetic Monolayer MoS2 Devices.
‡9
1
|
919
|
|
|
‡a
monolithicmteslalevelmagneticinductionbyselfrolledupmembranetechnology
‡A
Monolithic mtesla-level magnetic induction by self-rolled-up membrane technology
‡9
1
|
919
|
|
|
‡a
quantitativenanoscalesurfacevoltagemeasurementonorganicsemiconductorblends
‡A
Quantitative nanoscale surface voltage measurement on organic semiconductor blends
‡9
1
|
919
|
|
|
‡a
significantphonondragenableshighpowerfactorinthealgangan2dimensionalelectrongas
‡A
Significant Phonon Drag Enables High Power Factor in the AlGaN/GaN Two-Dimensional Electron Gas
‡9
1
|
919
|
|
|
‡a
spatialpotentialripplesofazimuthalsurfacemodesintopologicalinsulatorbi2te3nanowires
‡A
Spatial potential ripples of azimuthal surface modes in topological insulator Bi2Te3 nanowires
‡9
1
|
919
|
|
|
‡a
spatiallyresolvedthermometryofresistivememorydevices
‡A
Spatially Resolved Thermometry of Resistive Memory Devices.
‡9
1
|
919
|
|
|
‡a
thermalconductivitymeasurementsofhighandlowthermalconductivityfilmsusingascanninghotprobemethodinthe3ωmodeandnovelcalibrationstrategies
‡A
Thermal conductivity measurements of high and low thermal conductivity films using a scanning hot probe method in the 3ω mode and novel calibration strategies.
‡9
1
|
919
|
|
|
‡a
thermalconductivityofbi2te3nanowireshowsizeaffectsphononscattering
‡A
Thermal conductivity of Bi2Te3 nanowires: how size affects phonon scattering.
‡9
1
|
919
|
|
|
‡a
ultralowthermalconductivitiesinlargeareasigenanomeshesforthermoelectricapplications
‡A
Ultra-low thermal conductivities in large-area Si-Ge nanomeshes for thermoelectric applications
‡9
1
|
919
|
|
|
‡a
ultrahighthermalisolationacrossheterogeneouslylayered2dimensionalmaterials
‡A
Ultrahigh thermal isolation across heterogeneously layered two-dimensional materials
‡9
1
|
946
|
|
|
‡a
b
‡9
1
|
996
|
|
|
‡2
BNE|XX1093081
|
996
|
|
|
‡2
LC|n 92014023
|
996
|
|
|
‡2
LC|no2023011274
|
996
|
|
|
‡2
BNE|XX1141256
|
996
|
|
|
‡2
LC|nr 98026444
|
996
|
|
|
‡2
ISNI|000000004169031X
|
996
|
|
|
‡2
NTA|111504635
|
996
|
|
|
‡2
ISNI|0000000388941894
|
996
|
|
|
‡2
BNE|XX1622178
|
996
|
|
|
‡2
LC|nr 94002605
|
996
|
|
|
‡2
BNF|12117588
|
996
|
|
|
‡2
BNC|981058595888806706
|
996
|
|
|
‡2
BNC|981058516011306706
|
996
|
|
|
‡2
BNE|XX994514
|
996
|
|
|
‡2
BNC|981058608823006706
|
996
|
|
|
‡2
BNE|XX1730125
|
996
|
|
|
‡2
BNE|XX991075
|
996
|
|
|
‡2
ISNI|0000000059326364
|
996
|
|
|
‡2
ISNI|0000000389059852
|
996
|
|
|
‡2
BNF|16518790
|
996
|
|
|
‡2
RERO|A019093662
|
996
|
|
|
‡2
NTA|262672464
|
996
|
|
|
‡2
LC|no2002000299
|
996
|
|
|
‡2
LC|no 97015988
|
996
|
|
|
‡2
DNB|115738272X
|
996
|
|
|
‡2
SUDOC|235227943
|
996
|
|
|
‡2
DNB|1311767878
|
996
|
|
|
‡2
SUDOC|029580056
|
997
|
|
|
‡a
0 0 lived 0 0
‡9
1
|