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Interface engineering through atomic dopants in HfO2-based gate stacks
National licenceAmerican Institute of Physics | 2013| -
Tailoring Electrical Transport Across Metal–Thermoelectric Interfaces Using a Nanomolecular Monolayer
American Chemical Society | 2016| -
Copper-induced majority charge carrier reversal in bismuth telluride-based nanothermoelectrics
American Institute of Physics | 2019| -
High efficiency nanobulk thermoelectrics by bottom-up nanocrystal sculpting and assembly
Tema Archive | 2012| -
Environment-dependent interfacial strength using first principles thermodynamics: The example of the Pt-HfO2 interface
American Institute of Physics | 2013| -
Multifold Electrical Conductance Enhancements at Metal–Bismuth Telluride Interfaces Modified Using an Organosilane Monolayer
American Chemical Society | 2017| -
Work function tuning at Au-HfO2 interfaces using organophosphonate monolayers
American Institute of Physics | 2016| -
Effect of molecular length on the electrical conductance across metal-alkanedithiol-Bi2Te3 interfaces
American Institute of Physics | 2016| -
Interfacial thermal conductance-rheology nexus in metal-contacted nanocomposites
American Institute of Physics | 2013| -
Molecular length effect on work function shifts at copper-organophosphonate-hafnia interfaces
American Institute of Physics | 2017| -
Pressure-induced insulator-to-metal transitions for enhancing thermoelectric power factor in bismuth telluride-based alloys
Royal Society of Chemistry | 2017| -
Divalent doping-induced thermoelectric power factor increase in p-type Bi2Te3 via electronic structure tuning
American Institute of Physics | 2019| -
Factorial toughening at microcorrugated metal-ceramic interfaces
National licenceAmerican Institute of Physics | 2011| -
Tailoring Al-SiO2 interfacial work function using an organophosphonate nanolayer
American Institute of Physics | 2017| -
Interplay between bond breaking and plasticity during fracture at a nanomolecularly-modified metal-ceramic interface
British Library Online Contents | 2016| -
Softening in silver-nanowire-filled polydimethylsiloxane nanocomposites
American Institute of Physics | 2014|
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