high-k dielectric |
5 |
organic transistors |
5 |
impedance |
4 |
in situ |
4 |
monolayers |
4 |
organic field-effect transistor |
4 |
probes |
4 |
thermal ablations |
4 |
array devices |
3 |
bending stability |
3 |
biomedical applications |
3 |
c-reactive protein (crp) sensors |
3 |
dopant-free |
3 |
flexible |
3 |
hole transport materials |
3 |
low voltage |
3 |
mapbi 3 solar cells |
3 |
microhumps |
3 |
mobility |
3 |
molecular orientation |
3 |
organic field‐effect transistors |
3 |
organic semiconductor crystals |
3 |
pressure sensors |
3 |
solution shearing |
3 |
ultraflexibility |
3 |
ultraflexible substrates |
3 |
2d |
2 |
bioelectronics |
2 |
contact resistance |
2 |
electrode transfer |
2 |
enzymatic biosensor |
2 |
field‐effect transistors |
2 |
grain boundary-free |
2 |
long-term memory |
2 |
mica patterning |
2 |
molecular crystals |
2 |
monolayer organic semiconductor |
2 |
neuromorphic transistors |
2 |
nucleation |
2 |
organic crystals |
2 |
organic electrochemical transistor |
2 |
organic electrochemical transistors |
2 |
organic field-effect transistors |
2 |
reservoir computing |
2 |
scale down |
2 |
semiconductors |
2 |
short-term memory |
2 |
shrink films |
2 |
single crystal |
2 |
subthreshold swing |
2 |
surface energy |
2 |
templates |
2 |
x-ray diffraction |
2 |
2d mxene |
1 |
active matrix |
1 |
active matrix array |
1 |
aluminum |
1 |
atomic force microscopy |
1 |
bending radius |
1 |
bi-layer |
1 |
bilayer heterojunction |
1 |
biofeedback |
1 |
blade coating |
1 |
calcium |
1 |
capillary force |
1 |
capillary transfer method |
1 |
carbon nanotube |
1 |
carbon nanotubes |
1 |
carbon nanotubes and boron nitride nanotubes |
1 |
carrier transport |
1 |
cellulose fiber paper |
1 |
charge accumulation |
1 |
charge transfer |
1 |
charge transfer process |
1 |
charge traps |
1 |
cmr |
1 |
co-existence |
1 |
complementary inverter |
1 |
conductivity |
1 |
continuum-based equations |
1 |
conversion efficiency |
1 |
copolymerization |
1 |
copolymers |
1 |
coupling efficiency |
1 |
crack propagation |
1 |
critical diameter |
1 |
crystal growth |
1 |
cyano functionalization |
1 |
decay (organic) |
1 |
defect density |
1 |
defects |
1 |
degradation |
1 |
dielectric thin films |
1 |
dntt |
1 |
dph-btbt |
1 |
dynamic range |
1 |
efficiency enhancement |
1 |
electric impedance |
1 |
electric impedance measurement |
1 |
electric sensing devices |
1 |
electrical conductance |
1 |
electrical properties |
1 |
electrodes |
1 |
electron and hole traps |
1 |
energy gap |
1 |
exciton dissociation |
1 |
excitons |
1 |
flexible ofets |
1 |
floated gate |
1 |
freestanding nanosheets |
1 |
gallium alloys |
1 |
gallium nitride |
1 |
gan |
1 |
halogen functionalization |
1 |
heat resistance |
1 |
heat transfer |
1 |
heteroepitaxy |
1 |
heterojunction |
1 |
heterojunction devices |
1 |
heterojunctions |
1 |
hybrid dielectric |
1 |
hybrid dielectrics |
1 |
infrared imaging |
1 |
ion exchange |
1 |
iv characteristics |
1 |
lattice boltzmann methods |
1 |
light emission |
1 |
light emitting diodes |
1 |
light programmable |
1 |
low operating power |
1 |
low power |
1 |
low-frequency noise |
1 |
manganese compounds |
1 |
manganese oxide |
1 |
memory |
1 |
memory effect |
1 |
memory effects |
1 |
memory window |
1 |
metals |
1 |
micro-manufacturing |
1 |
molecular dynamics simulations |
1 |
molecular mechanics |
1 |
molecular spectroscopy |
1 |
monolayer organic semiconductors |
1 |
monolithic integration |
1 |
morphology optimization |
1 |
mqws |
1 |
n-type polymer semiconductors |
1 |
nano-elo |
1 |
nanodevices |
1 |
nanoelectronics |
1 |
nanoparticle |
1 |
nanoparticles |
1 |
nanoscale effects |
1 |
nanostructured materials |
1 |
nct04638348 |
1 |
nitrogen compounds |
1 |
non-volatile memories |
1 |
nonvolatile memories |
1 |
open circuit voltage |
1 |
optical intetconnect |
1 |
organic |
1 |
organic light emitting diodes (oled) |
1 |
organic solar cell |
1 |
organic thermoelectrics |
1 |
organic thin-film transistors |
1 |
organic transistor |
1 |
organic transistor memory device |
1 |
oxide minerals |
1 |
paraffin wax |
1 |
parylene-c |
1 |
pelvic floor muscle training |
1 |
perovskite |
1 |
piezoelectric transducers |
1 |
piezoelectricity |
1 |
polarization |
1 |
polymeric mixed ionic-electronic conductors |
1 |
pr0.7ca0.3mno3 (pcmo) |
1 |
quantum dot |
1 |
randomized controlled trial |
1 |
resistive switching |
1 |
resistive switching (rs) |
1 |
room temperature |
1 |
s-shape |
1 |
scanning electron microscopy |
1 |
screen-printing |
1 |
self-assembled monolayer |
1 |
self-assembled monolayers |
1 |
self-assembly |
1 |
semiconducting organic compounds |
1 |
semiconductor devices |
1 |
semiconductor growth |
1 |
semiconductor laser |
1 |
semiconductor morphology |
1 |
semiconductor quantum wells |
1 |
semiconductors (materials) |
1 |
silicon photonics |
1 |
solar power generation |
1 |
solution-processed electrodes |
1 |
stability |
1 |
stamp printing |
1 |
stereochemistry |
1 |
strain |
1 |
stress urinary incontinence |
1 |
structural health monitoring |
1 |
substrate temperature |
1 |
switching |
1 |
switching systems |
1 |
temperature distribution |
1 |
temperature sensors |
1 |
temperature-sensor arrays |
1 |
thermal conductivity |
1 |
thermal imaging |
1 |
thermal lensing |
1 |
thermistors |
1 |
thermoanalysis |
1 |
thermoreflectance |
1 |
thin film devices |
1 |
thin films |
1 |
transmission electron microscopy |
1 |
transport |
1 |
tubes (components) |
1 |
ultrathin inorganic nanosheets |
1 |
van der waals forces |
1 |
vibration |
1 |
vibration and stability |
1 |