|
two-dimensional materials |
8 |
|
molybdenum disulfide |
6 |
|
transition metal dichalcogenides |
6 |
|
chirality |
4 |
|
transition-metal dichalcogenides |
4 |
|
2d materials |
3 |
|
catalysis |
3 |
|
chemical vapor deposition |
3 |
|
electronics |
3 |
|
energy storage and conversion |
3 |
|
epitaxial growth |
3 |
|
interlayer reconstruction |
3 |
|
mxene |
3 |
|
optoelectronics |
3 |
|
orientation control |
3 |
|
phase engineering of nanomaterials |
3 |
|
sapphire substrate |
3 |
|
self-assembled monolayers |
3 |
|
surface reconstruction |
3 |
|
transition metal dichalcogenide |
3 |
|
tungsten disulfide |
3 |
|
2d perovskites |
2 |
|
2d semiconductors |
2 |
|
bi2o2se |
2 |
|
biocompatibility |
2 |
|
breathability |
2 |
|
carbon nanotubes |
2 |
|
catalyst |
2 |
|
charge transfer |
2 |
|
circular bragg grating |
2 |
|
coordination polymers |
2 |
|
defect engineering |
2 |
|
degrees of freedom (mechanics) |
2 |
|
electric fields |
2 |
|
electrical properties |
2 |
|
electrochemical exfoliation |
2 |
|
energy conversion |
2 |
|
energy level alignment |
2 |
|
excitons |
2 |
|
ferroelectric |
2 |
|
field-effect transistors |
2 |
|
future transistors |
2 |
|
graphene |
2 |
|
heterojunctions |
2 |
|
heterostructure photodetector |
2 |
|
hexagonal boron nitride |
2 |
|
in-memory computing |
2 |
|
indirect absorption |
2 |
|
integrated circuits |
2 |
|
interfacial engineering |
2 |
|
intervalence band transition |
2 |
|
landforms |
2 |
|
layer number determination |
2 |
|
lithium-sulfur battery |
2 |
|
local magnetic moment |
2 |
|
mechanoshensing |
2 |
|
metal dichalcogenides |
2 |
|
midgap defect states |
2 |
|
molybdenum diselenide |
2 |
|
molybdenum disulfide (mos ) 2 |
2 |
|
monolayer |
2 |
|
monolayer and bulk |
2 |
|
monolayer tmd materials |
2 |
|
monolayers |
2 |
|
mos 2 |
2 |
|
mos2 |
2 |
|
multidirection |
2 |
|
nanogenerator and electronic skin |
2 |
|
on-chip photonics |
2 |
|
optical contrast analysis |
2 |
|
optical properties |
2 |
|
organic transistors |
2 |
|
phonon |
2 |
|
photoluminescence |
2 |
|
piezoelectricity |
2 |
|
polysulfide |
2 |
|
purcell enhancement |
2 |
|
ring oscillator |
2 |
|
scaling |
2 |
|
scanning photocurrent mapping |
2 |
|
second harmonic generation |
2 |
|
selective growth |
2 |
|
shuttling effect |
2 |
|
silicon |
2 |
|
skin-interfaced iontronics |
2 |
|
spin splitting |
2 |
|
statistical study |
2 |
|
surface functionalization |
2 |
|
time-reversal symmetry breaking |
2 |
|
transfer |
2 |
|
transistors |
2 |
|
transition metal dichalcogenides (tmd) |
2 |
|
tungsten diselenide |
2 |
|
two-dimensional (2d) electronics |
2 |
|
ultrascaled dielectric |
2 |
|
ultrashort channel length |
2 |
|
valley |
2 |
|
valley polarization |
2 |
|
van der waals crystal |
2 |
|
van der waals forces |
2 |
|
ws 2 |
2 |
|
wse 2 |
2 |
|
zone-boundary |
2 |
|
2-d material |
1 |
|
2d material |
1 |
|
2d mxene |
1 |
|
2d transition metal dichalcogenide gradient alloy |
1 |
|
2d van der waals materials |
1 |
|
3d heterostructures |
1 |
|
3d ising superconductivity |
1 |
|
3d moo conductive core 2 |
1 |
|
3d/2d heterojunction |
1 |
|
action potential |
1 |
|
advanced electronics |
1 |
|
aerobic oxidation |
1 |
|
aerosols |
1 |
|
alanine aminotransferase (alt) |
1 |
|
aligned growth |
1 |
|
all-carbon materials |
1 |
|
ambient air |
1 |
|
amorphous molybdenum sulfide |
1 |
|
anderson's rule |
1 |
|
anode |
1 |
|
anode materials |
1 |
|
antifouling separator |
1 |
|
applied physics |
1 |
|
area efficiency |
1 |
|
area selective chemical reaction deposition (cvd) |
1 |
|
armchair edge |
1 |
|
aromatic molecules |
1 |
|
artificial stacking |
1 |
|
astrocytes |
1 |
|
asymmetry |
1 |
|
atomic defects |
1 |
|
atomic force microscopy |
1 |
|
atomic layered |
1 |
|
atomic level characterization |
1 |
|
atp |
1 |
|
au dimer |
1 |
|
back-end-of-the-line (beol) |
1 |
|
band alignment |
1 |
|
band alignments |
1 |
|
band bending |
1 |
|
band gap opening |
1 |
|
band gap tuning |
1 |
|
band-gap tuning |
1 |
|
band-to-band tunneling |
1 |
|
batteries |
1 |
|
battery |
1 |
|
bi o se 2 2 |
1 |
|
bilayer grapheme |
1 |
|
bilayer graphene sheets |
1 |
|
bilayer intercalation |
1 |
|
bimetallic |
1 |
|
bioelectronics |
1 |
|
bioinspired dimensional transitions |
1 |
|
bionanotechnology |
1 |
|
biosensors |
1 |
|
bismuth oxychalcogenide |
1 |
|
black current |
1 |
|
bond-free heterointerface |
1 |
|
borazine |
1 |
|
boron nitride |
1 |
|
brain-like behavior |
1 |
|
c fullerene 60 |
1 |
|
cafm |
1 |
|
carbohydrates |
1 |
|
carbon |
1 |
|
carbon coated co o 3 4 |
1 |
|
carbon coating |
1 |
|
carbon membrane |
1 |
|
carrier transport |
1 |
|
catalysts |
1 |
|
cathode |
1 |
|
ceramics |
1 |
|
cf plasma 4 |
1 |
|
cf plasma and transistor 4 |
1 |
|
ch nh pbbr 3 3 3 |
1 |
|
charge-spin conversion |
1 |
|
charge-storage mechanism |
1 |
|
charge-trap memory |
1 |
|
chemical vapor deposition (cvd) |
1 |
|
chemical vapor deposition (cvd) (chemical reaction) |
1 |
|
chemical-force microscopy |
1 |
|
chirallty |
1 |
|
circular dichroism |
1 |
|
cmos inverters |
1 |
|
co reduction 2 |
1 |
|
co nanocluster |
1 |
|
co s @mos 9 8 x |
1 |
|
co2 reduction |
1 |
|
cobalt diphosphide |
1 |
|
cobalt phosphide |
1 |
|
collaborative nanoarchitectures |
1 |
|
composite catalyst |
1 |
|
conducting materials |
1 |
|
conducting polymers |
1 |
|
conductive afm |
1 |
|
conductive nanofilaments |
1 |
|
conductive polymer |
1 |
|
conductivity |
1 |
|
conductivity enhancement |
1 |
|
contact |
1 |
|
contact effect |
1 |
|
contact resistance |
1 |
|
contralateral-gated |
1 |
|
controllable synthesis strategy |
1 |
|
copper |
1 |
|
copper surface |
1 |
|
critical points in brillouin zones |
1 |
|
cross-plane |
1 |
|
crumpled graphene |
1 |
|
crystal defects |
1 |
|
crystal filling |
1 |
|
crystallinity |
1 |
|
crystallization |
1 |
|
crystallization kinetics |
1 |
|
cu electrode |
1 |
|
cu foam electrode |
1 |
|
cu-n |
1 |
|
cu-o |
1 |
|
cvd |
1 |
|
cvd graphene |
1 |
|
cvd growth |
1 |
|
cvd oxides |
1 |
|
damascene structures |
1 |
|
defects |
1 |
|
deposition process |
1 |
|
dft-negf calculations |
1 |
|
diamond anvil cell |
1 |
|
diatom silica |
1 |
|
dielectric breakdown |
1 |
|
dielectric engineering |
1 |
|
dielectric layer |
1 |
|
diphenylsiloxane oligomer |
1 |
|
dirac point |
1 |
|
direct electrochemistry-based biosensor |
1 |
|
direct growth |
1 |
|
discrete energy levels |
1 |
|
dislocation core |
1 |
|
dna |
1 |
|
dna hybridization |
1 |
|
dna sensing |
1 |
|
dna sensors |
1 |
|
domain walls |
1 |
|
doped carbon |
1 |
|
doping |
1 |
|
dsscs |
1 |
|
dye-sensitized solar cells |
1 |
|
edge states |
1 |
|
electric double layer transistors |
1 |
|
electric double layers |
1 |
|
electric double-layer transistor |
1 |
|
electrical bistability |
1 |
|
electrical contacts |
1 |
|
electrical gating |
1 |
|
electrocardiogram |
1 |
|
electrocatalysis |
1 |
|
electrocatalyst |
1 |
|
electrocatalysts |
1 |
|
electrocatalytic reaction |
1 |
|
electrocatalytic water splitting |
1 |
|
electrochemical catalyst |
1 |
|
electrochemistry |
1 |
|
electrode |
1 |
|
electrode materials |
1 |
|
electroless deposition |
1 |
|
electrolysis |
1 |
|
electrolyte additives |
1 |
|
electron affinity rule |
1 |
|
electron energy loss spectroscopy |
1 |
|
electron transport |
1 |
|
electron tunneling |
1 |
|
electron-phonon coupling |
1 |
|
electron-phonon interaction |
1 |
|
electronic band structures |
1 |
|
electronic material |
1 |
|
electronic structure |
1 |
|
electropolymerization |
1 |
|
ellipsometry |
1 |
|
energy applications |
1 |
|
energy efficiency |
1 |
|
energy storage |
1 |
|
energy transfer |
1 |
|
epidermal sensors |
1 |
|
exciton |
1 |
|
exciton binding energy |
1 |
|
exfoliation |
1 |
|
ferroelectrics |
1 |
|
few layer graphene |
1 |
|
field effect transistor |
1 |
|
field effect transistors |
1 |
|
field-effect transistor |
1 |
|
field-effect transistors (fet) |
1 |
|
figure of merit zt |
1 |
|
first principle calculations |
1 |
|
first-principles calculations |
1 |
|
flexible displays |
1 |
|
flexible electronics |
1 |
|
flexible freestanding electrodes |
1 |
|
flexible microprobe |
1 |
|
flexible thermoelectrics |
1 |
|
fluorescence quenching microscopy |
1 |
|
fluorinated graphene |
1 |
|
frenkel-poole (f-p) emission |
1 |
|
future cmos technology |
1 |
|
förster resonance energy transfer |
1 |
|
gan |
1 |
|
gap plasmon |
1 |
|
gap states |
1 |
|
gasb |
1 |
|
gate tunability |
1 |
|
general synthesis strategy |
1 |
|
generative adversarial network |
1 |
|
gold nanoparticle (gnp) |
1 |
|
gold-transfer method |
1 |
|
grain boundaries (gbs) |
1 |
|
graphene anodes |
1 |
|
graphene biosensors |
1 |
|
graphene field-effect transistor (gfet) |
1 |
|
graphene film |
1 |
|
graphene ink |
1 |
|
graphene oxide |
1 |
|
graphene paper |
1 |
|
graphite anodes |
1 |
|
graphitization |
1 |
|
gw-bse |
1 |
|
hall effect measurement |
1 |
|
hall effect measurements |
1 |
|
harsh environment |
1 |
|
heat dissipation |
1 |
|
heparin sodium salt |
1 |
|
heterogeneous catalysis |
1 |
|
heterojunction |
1 |
|
heterojunction bipolar transistors |
1 |
|
heterojunction solar cell |
1 |
|
heterostructure |
1 |
|
heterostructures |
1 |
|
heterosynaptic plasticity |
1 |
|
hexagonal α-in se 2 3 |
1 |
|
hierarchical architecture |
1 |
|
high current density |
1 |
|
high selectivity |
1 |
|
high-current gain |
1 |
|
high-surface-area |
1 |
|
high-temperature detection |
1 |
|
hollow microsphere |
1 |
|
homoge- neous linewidth |
1 |
|
horseradish peroxidase |
1 |
|
hot-electron transport |
1 |
|
hrxps |
1 |
|
hybrid |
1 |
|
hybrid battery |
1 |
|
hydrogen evolution reaction |
1 |
|
hydrogen evolution reaction (her) |
1 |
|
hydrogen evolution reactions |
1 |
|
hydrogen plasma |
1 |
|
hydrophilization |
1 |
|
hydrostatic pressure |
1 |
|
hydrothermal |
1 |
|
hydrothermal method |
1 |
|
in se 2 3 |
1 |
|
in situ analysis |
1 |
|
in-plane |
1 |
|
inas |
1 |
|
insb |
1 |
|
interfaces |
1 |
|
interlayer coupling |
1 |
|
interlayer electron transport |
1 |
|
interlayer excitons |
1 |
|
inverters |
1 |
|
ipes |
1 |
|
kinetic monte carlo |
1 |
|
l-alanine |
1 |
|
label-free detection |
1 |
|
lactic acid |
1 |
|
lateral heterojunctions |
1 |
|
lateral heterostructures |
1 |
|
lateral intrinsic/p-doped heterojunction |
1 |
|
lateral junction |
1 |
|
layer-by-layer |
1 |
|
layered |
1 |
|
layered 2d materials |
1 |
|
layered material |
1 |
|
layered materials |
1 |
|
leed/leem |
1 |
|
li-ion battery |
1 |
|
light-emitting devices |
1 |
|
linear magnetoresistance |
1 |
|
lipid bilayer |
1 |
|
liquid gating |
1 |
|
liquid-gated transistors |
1 |
|
lithiation |
1 |
|
lithium batteries |
1 |
|
lithium ion battery |
1 |
|
lithium manganate |
1 |
|
lithium solvation |
1 |
|
lithium titanium oxide |
1 |
|
lithium-ion batteries |
1 |
|
lithium-ions |
1 |
|
lithium–sulfur batteries |
1 |
|
lithium–sulfur battery |
1 |
|
li–s batteries |
1 |
|
low overpotential |
1 |
|
low power transistors |
1 |
|
low-angle grain boundaries |
1 |
|
low-k dielectrics |
1 |
|
luminescence |
1 |
|
magic |
1 |
|
magnetic properties |
1 |
|
magneto-pl |
1 |
|
magnetocaloric effect |
1 |
|
magnetostructural transition |
1 |
|
materials science |
1 |
|
membrane proteins |
1 |
|
memory effect |
1 |
|
memristors |
1 |
|
mesophase |
1 |
|
metal contact |
1 |
|
metal phosphate |
1 |
|
metal phosphide |
1 |
|
metal transition dichalcogenide |
1 |
|
metallic edge state |
1 |
|
metallicity |
1 |
|
metasurface |
1 |
|
methylsilane |
1 |
|
microelectrode |
1 |
|
microelectronics |
1 |
|
microscopy |
1 |
|
microwave impedance microscopy |
1 |
|
mid-infrared |
1 |
|
mixed-dimensional vdw heterostructure |
1 |
|
mncoge al compounds 1?x x |
1 |
|
mobility |
1 |
|
mode locked lasers |
1 |
|
molecular beam epitaxy |
1 |
|
molecular dopants |
1 |
|
molecular memory |
1 |
|
molecular weight |
1 |
|
molybdenium disulfide |
1 |
|
molybdenum disulfide (mos ) 2 |
1 |
|
molybdenum disulfides |
1 |
|
molybdenum sulfide |
1 |
|
molybdenum sulfides |
1 |
|
molybdenum trioxide |
1 |
|
monolayer mos devices 2 |
1 |
|
monolayer transition metal dichalcogenide |
1 |
|
monolayer ws 2 |
1 |
|
monolayer wse 2 |
1 |
|
monolayer-bilayer interface |
1 |
|
monolithic 3-d (m3d) integration |
1 |
|
mos nanosheets 2 |
1 |
|
mose2 |
1 |
|
movpe |
1 |
|
multi-dimensional coherent spectroscopy |
1 |
|
multidirectional programming |
1 |
|
multifunctional applications |
1 |
|
multilayer |
1 |
|
multilevel memory |
1 |
|
n,p ligands |
1 |
|
n-doping |
1 |
|
n-methyl-2-pyrrolidone |
1 |
|
nanoelectronic devices |
1 |
|
nanoimprint |
1 |
|
nanoparticle |
1 |
|
nanoparticles |
1 |
|
nanopipettes |
1 |
|
nanopore structure |
1 |
|
nanosheets |
1 |
|
nanostructures |
1 |
|
nanotubes |
1 |
|
nd: yag |
1 |
|
negative photoresponse |
1 |
|
neural networks |
1 |
|
neural recording |
1 |
|
neuromorphic computing |
1 |
|
neuromorphics |
1 |
|
neuron |
1 |
|
ni-foam |
1 |
|
niobium chloride |
1 |
|
nitrogen doping |
1 |
|
nitrogen-doped graphene |
1 |
|
noise generator |
1 |
|
noncentrosymmetry |
1 |
|
noncovalent interactions |
1 |
|
nonvolatile |
1 |
|
nonvolatile memory |
1 |
|
nucleation |
1 |
|
ohmic contact |
1 |
|
ohmic contacts |
1 |
|
on/off current ratio |
1 |
|
one-dimensional atomic crystals |
1 |
|
operando |
1 |
|
operando raman |
1 |
|
optical |
1 |
|
optical cavity |
1 |
|
optoelectronic memories |
1 |
|
optoelectronic synaptic device |
1 |
|
organic photovoltaic cell |
1 |
|
organic semiconductors |
1 |
|
organic solar cell |
1 |
|
organic tmd heterostructure |
1 |
|
organic-inorganic interface |
1 |
|
organosilicate glass (osg) |
1 |
|
oxygen evolution reaction |
1 |
|
oxygen evolution reaction (oer) |
1 |
|
oxygen plasma |
1 |
|
p-mosfet |
1 |
|
palladium diselenide |
1 |
|
patterning |
1 |
|
pdse2 |
1 |
|
peak force qnm |
1 |
|
pedot |
1 |
|
pedot:pss |
1 |
|
performance evaluation |
1 |
|
perovskite |
1 |
|
perovskites |
1 |
|
ph sensing |
1 |
|
phase inversion |
1 |
|
phonon anomaly |
1 |
|
phosphidation |
1 |
|
phosphorene/metal phosphides |
1 |
|
photocatalytic hydrogen evolution |
1 |
|
photoconductivity imaging |
1 |
|
photoconductors |
1 |
|
photodetector |
1 |
|
photoelectron spectroscopy |
1 |
|
photoemission spectroscopy |
1 |
|
photogain |
1 |
|
photon exchange |
1 |
|
photonic crystals |
1 |
|
photonic synapses |
1 |
|
photoresponse |
1 |
|
photoresponsivity |
1 |
|
phototransistors |
1 |
|
photovoltaic devices |
1 |
|
physical property |
1 |
|
piezoelectric substrate |
1 |
|
piranha mixture |
1 |
|
plasma treatment |
1 |
|
plasmonic |
1 |
|
ple |
1 |
|
polarization curves |
1 |
|
poly(n-vinylcarbazole) (pvk) |
1 |
|
poly(ε-caprolactone) |
1 |
|
polyethersulfone |
1 |
|
polymers |
1 |
|
polyoxometalate |
1 |
|
polysulfide-modified electrolytes |
1 |
|
porous diatom |
1 |
|
power factor |
1 |
|
pressure engineering |
1 |
|
p–i–n junction |
1 |
|
quantum dots |
1 |
|
quantum well |
1 |
|
radiation resistance |
1 |
|
raised source/drain |
1 |
|
raman spectra |
1 |
|
raman spectroscopy |
1 |
|
random telegraph noise |
1 |
|
rashba-edelstein effect |
1 |
|
re-melting phenomenon |
1 |
|
redox |
1 |
|
resistive switching |
1 |
|
resonant tunneling |
1 |
|
resonant tunneling phenomenon |
1 |
|
reverse micelles |
1 |
|
ripplon |
1 |
|
room-temperature ferroelectricity |
1 |
|
roscopy |
1 |
|
rram |
1 |
|
ruthenium |
1 |
|
sapphire grain boundary |
1 |
|
scanning electron microscopy |
1 |
|
scanning transmission electron microscopy |
1 |
|
scanning tunneling microscopy/spectroscopy |
1 |
|
scanning tunneling spectroscopy |
1 |
|
schottky barrier |
1 |
|
schottky contact |
1 |
|
screening effects |
1 |
|
sdh oscillations |
1 |
|
second-harmonic generation |
1 |
|
secretion |
1 |
|
seebeck coefficient |
1 |
|
seeds |
1 |
|
selective oxidation |
1 |
|
selectivity |
1 |
|
selenides |
1 |
|
self-aligned and scalable growth |
1 |
|
self-assembled channels |
1 |
|
semiconducting |
1 |
|
semiconductor |
1 |
|
semiconductors |
1 |
|
shg |
1 |
|
short channel device |
1 |
|
single layer molybdenum sulfide |
1 |
|
single layer wse 2 |
1 |
|
single-layer graphene nanoplatelet |
1 |
|
single-photon emission |
1 |
|
single-walled carbon nanotube |
1 |
|
single-walled carbon nanotubes |
1 |
|
sntase2 |
1 |
|
sodium-ions |
1 |
|
sol-gel |
1 |
|
solar cells |
1 |
|
spatial mobility fluctuations |
1 |
|
spherulite |
1 |
|
spin-orbit coupling |
1 |
|
spin-orbit torque |
1 |
|
spintronics |
1 |
|
sponges |
1 |
|
sputter |
1 |
|
sram |
1 |
|
stability |
1 |
|
standard wet cleaning |
1 |
|
steam plasma |
1 |
|
steep-slope transistors |
1 |
|
stem |
1 |
|
stem imaging |
1 |
|
stm/sts |
1 |
|
strain |
1 |
|
strain engineering |
1 |
|
structural |
1 |
|
sub-20 nm nanostructures |
1 |
|
sub-threshold swig |
1 |
|
substrate |
1 |
|
sulfides |
1 |
|
sulfur |
1 |
|
surface analysis |
1 |
|
surface plasmon |
1 |
|
surfactants |
1 |
|
swcnt |
1 |
|
swcnts |
1 |
|
switchable diode |
1 |
|
symmetric synergy |
1 |
|
tcnq |
1 |
|
technology |
1 |
|
tem |
1 |
|
temperature dependence |
1 |
|
terahertz conductivity |
1 |
|
tetrasodium 1,3,6,8-pyrenetetrasulfonic acid |
1 |
|
tft |
1 |
|
thermal resistance |
1 |
|
thermoelectric |
1 |
|
thermoelectrics |
1 |
|
thermopower |
1 |
|
thin film |
1 |
|
thin-film device |
1 |
|
thomasâfermi screening |
1 |
|
three-dimensional graphene |
1 |
|
titanium dioxide |
1 |
|
transient harman method |
1 |
|
transistor |
1 |
|
transition metal dichalcogenide (tmd) |
1 |
|
transition metal dichalcogenide monolayers |
1 |
|
transition metal dichalcogenides (tmdcs) |
1 |
|
transition metal dichalcogenides (tmds) |
1 |
|
transition metal dichalcogonides |
1 |
|
transition metal sulfides/selenides |
1 |
|
transmission electron microscopy |
1 |
|
transparent conducting electrodes |
1 |
|
transparent conductive film |
1 |
|
transparent electrodes |
1 |
|
transport |
1 |
|
transport properties |
1 |
|
triazine |
1 |
|
tungsten diselenide (wse ) 2 |
1 |
|
tungsten diselenides |
1 |
|
tunneling field effect transistors |
1 |
|
two dimensional displays |
1 |
|
two-dimensional |
1 |
|
two-dimensional layered materials |
1 |
|
two-dimensional material |
1 |
|
two-dimensional transition metal dichalcogenides |
1 |
|
ultraclean surface |
1 |
|
ultrafast |
1 |
|
ultrafast charge transfer |
1 |
|
ultrasensitive detection |
1 |
|
ultrathin nanosheets |
1 |
|
ups |
1 |
|
valleytronics |
1 |
|
van der waal ferroelectrics |
1 |
|
van der waals |
1 |
|
van der waals (vdw) ferroelectrics |
1 |
|
van der waals epitaxy |
1 |
|
van der waals heterojunctions |
1 |
|
van der waals heterostructure |
1 |
|
van der waals materials |
1 |
|
van der wall stacking |
1 |
|
variable z spectroscopy |
1 |
|
vdw heterostructure |
1 |
|
water splitting |
1 |
|
wigner crystal |
1 |
|
work function |
1 |
|
ws2 |
1 |
|
wse 2 |
1 |
|
wse2 |
1 |
|
zinc oxide |
1 |
|
zipper two-dimensional material |
1 |
|
α-ketoglutarate |
1 |
|
β-phase |
1 |