nanomechanics |
5 |
grain size |
3 |
high-entropy alloy |
3 |
in situ tem |
3 |
mechanical metamaterial |
3 |
microstructure |
3 |
thermal stability |
3 |
3d printing |
2 |
4h hexagonal phase |
2 |
ag microwire |
2 |
atom probe tomography |
2 |
bamboo |
2 |
contact resistance |
2 |
crack resistance |
2 |
deformation mechanism |
2 |
deformation twin |
2 |
dislocation |
2 |
ductility |
2 |
electron energy-loss spectroscopy |
2 |
flexural behavior |
2 |
fracture behavior |
2 |
grain boundary |
2 |
hardness |
2 |
he bubbles |
2 |
high-entropy alloys |
2 |
high-k dielectric |
2 |
highly pressurized helium nanobubbles |
2 |
in situ mechanical testing |
2 |
in situ nanomechanics |
2 |
in situ tensile testing |
2 |
in-situ tensile test |
2 |
laser-induction hybrid cladding (lihc) |
2 |
map2: benchmark |
2 |
mechanical behavior |
2 |
mechanical properties |
2 |
medium-entropy alloy |
2 |
metallic glasses |
2 |
micro-mechanical device |
2 |
microlattice |
2 |
microwire |
2 |
molecular crystals |
2 |
monolayers |
2 |
nanoindentation |
2 |
nanomanufacturing |
2 |
nanowire |
2 |
organic field-effect transistors |
2 |
origami |
2 |
partial dislocations |
2 |
phase transition |
2 |
radiation-induced segregation |
2 |
rayleigh instability |
2 |
scale down |
2 |
semiconductors |
2 |
shrink films |
2 |
size effect |
2 |
sputtering |
2 |
stacking fault energy |
2 |
stacking faults |
2 |
strength |
2 |
strengthening effect |
2 |
structural materials |
2 |
subthreshold swing |
2 |
tensile testing |
2 |
thin films |
2 |
torsion |
2 |
transmission electron microscopy |
2 |
tungsten |
2 |
ultrathin gold nanoribbons |
2 |
work-hardening |
2 |
1-d nanomaterial |
1 |
1d nanostructure |
1 |
2d materials |
1 |
3d microelectronics |
1 |
3d nanostructure |
1 |
3d printing technique |
1 |
3d printing technology |
1 |
a1. crystal morphology |
1 |
a2. hydrothermal crystal growth |
1 |
actuator |
1 |
additive manufacturing |
1 |
adhesion |
1 |
adhesion mechanism |
1 |
advanced manufacturing |
1 |
ag nanowire |
1 |
all-aqueous microfluidics |
1 |
alpha irradiation |
1 |
altivnb |
1 |
aluminum |
1 |
amino acid and purine metabolism |
1 |
amorphous materials |
1 |
amorphous oxide dispersion strengthened (aods) |
1 |
amorphous structure |
1 |
applications |
1 |
architected material |
1 |
architected metamaterials |
1 |
architectured graphene |
1 |
assembly |
1 |
asymmetric growth |
1 |
asymmetry |
1 |
atomic configuration |
1 |
atomic force microscopy (afm) |
1 |
atomic shift |
1 |
auxetic |
1 |
auxetics |
1 |
b1. metals |
1 |
b1. nanomaterials |
1 |
bamboo constituents |
1 |
bandgap |
1 |
bending fracture |
1 |
bending stiffness |
1 |
bi-phase lattice |
1 |
bimetallic composite |
1 |
bio-inspired structural materials |
1 |
biocompatibility |
1 |
bioinspired architecture |
1 |
biomechanics |
1 |
biomimetic structures |
1 |
biomimetics |
1 |
bonding |
1 |
boron nitride-like catalyst |
1 |
bottom-up manufacturing |
1 |
broadband ultrasound |
1 |
c/c composites |
1 |
capacity |
1 |
carbon |
1 |
carbon dioxide reduction reaction |
1 |
carbon fiber |
1 |
carbon fiber bridging |
1 |
carbon fiber reinforced polymer (cfrp) |
1 |
carbon materials |
1 |
carbon nanotube |
1 |
cardiovascular stent |
1 |
cargo transport |
1 |
cathodes |
1 |
cell reprogramming |
1 |
cell transfection |
1 |
cellular materials |
1 |
cellulose membrane |
1 |
cementitious composites |
1 |
cementitious materials |
1 |
ceramic |
1 |
ceramic architectures |
1 |
cfrp |
1 |
chemical short-range order |
1 |
cnt nano-bridging |
1 |
cnt-reinforced epoxy nanocomposites |
1 |
co o 3 4 |
1 |
coating |
1 |
cold welding |
1 |
composite lattice |
1 |
composites |
1 |
compression and release processes |
1 |
compressive behavior |
1 |
computational modeling |
1 |
contact mechanics |
1 |
copper |
1 |
copper alloys |
1 |
core–shell double microtubes structure |
1 |
corrosion resistance |
1 |
crack propagation |
1 |
crss |
1 |
crystalline-amorphous nanostructure |
1 |
cspbbr 3 |
1 |
cu-ta alloy |
1 |
cu-to-cu direct bonding |
1 |
current-carrying wear |
1 |
cutting-edge structural materials |
1 |
cutting-edgefunctional materials |
1 |
cyclic deformation |
1 |
cyclic deformation performance |
1 |
cyclic oxidation |
1 |
damage mechanisms |
1 |
damage recoverability |
1 |
damage tolerance |
1 |
defect engineering |
1 |
defect tolerance |
1 |
deform mechanism |
1 |
deformation behaviors |
1 |
dft |
1 |
diamane |
1 |
diamond |
1 |
diamond composites |
1 |
diamond nanoneedle |
1 |
diamond nanostructures |
1 |
diamond nanothread |
1 |
dielectric property |
1 |
digital micromirror device (dmd) |
1 |
dislocation nucleation |
1 |
dual-phase strengthening |
1 |
ductile semiconductor |
1 |
dust-mitigation |
1 |
dynamic solute partitioning |
1 |
elastic deformation |
1 |
elastic modulus |
1 |
elastic property |
1 |
elastic strain engineering |
1 |
elasticity |
1 |
electrical property |
1 |
electrocatalysts |
1 |
electrochemical performance |
1 |
electrode |
1 |
electronic property |
1 |
electronics |
1 |
energy conversion |
1 |
energy metabolism |
1 |
energy storage |
1 |
epoxy composite |
1 |
experimental techniques |
1 |
facets |
1 |
fatigue |
1 |
fatigue behavior |
1 |
fatigue failure model |
1 |
fatigue prediction model |
1 |
fea |
1 |
fem simulation |
1 |
femtosecond laser |
1 |
few-layer mos2 |
1 |
fiber supercapacitor |
1 |
fibromyalgia |
1 |
flexible |
1 |
flexible electronics |
1 |
flexible sensor |
1 |
flexible supercapacitor |
1 |
flexible thermoelectric generator |
1 |
flow lithography |
1 |
focused ion beam |
1 |
focused ion beam machining |
1 |
fracture |
1 |
fracture strength |
1 |
fracture toughness |
1 |
functionalities |
1 |
functionalization |
1 |
functionally graded design |
1 |
functionally graded structure |
1 |
gase |
1 |
gene fusion |
1 |
geopolymer composites |
1 |
glass forming ability |
1 |
gold microwire |
1 |
gold nanorod |
1 |
gold nanowires |
1 |
gradient evolution effect |
1 |
grain boundaries |
1 |
grain boundary segregation |
1 |
graphene |
1 |
graphene fibers |
1 |
graphene nanofilms |
1 |
graphene oxide |
1 |
graphene oxide (go) |
1 |
graphite flakes |
1 |
graphitization |
1 |
h-bn |
1 |
hall-petch relationship |
1 |
hardening |
1 |
helium bubbles |
1 |
heterogeneous structure |
1 |
heterostructure |
1 |
heterostructures |
1 |
hierarchical architecture |
1 |
hierarchical nanostructure |
1 |
hierarchical structure |
1 |
hierarchical structures |
1 |
high conductivity |
1 |
high crystallinity |
1 |
high cycle fatigue testing |
1 |
high entropy alloy |
1 |
high entropy alloys |
1 |
high-entropy alloy (hea) |
1 |
high-temperature corrosion |
1 |
hollow microtubes |
1 |
hot corrosion |
1 |
human-machine interface |
1 |
hydrodynamic regulation |
1 |
hydrogen evolution reaction |
1 |
hydrophobicity |
1 |
in situ |
1 |
in situ compression |
1 |
in situ compressive test |
1 |
in situ electron microscopy (sem and tem) |
1 |
in situ flexural bending test |
1 |
in situ mechanical tests |
1 |
in situ nanoindenter |
1 |
in situ sem |
1 |
in situ sem/tem |
1 |
in situ sem/tem testing |
1 |
in situ testing |
1 |
in situ tests |
1 |
in situ transmission electron microscope (tem) |
1 |
in situ transmission electron microscopy (tem) |
1 |
in-plane mechanical properties |
1 |
in-situ growth |
1 |
in-situ tem |
1 |
inconel 718 alloy |
1 |
induced pluripotency |
1 |
ink formulation process |
1 |
integrated metabolomics |
1 |
interconnect |
1 |
interface engineering |
1 |
interface wettability |
1 |
interfacial segregation |
1 |
interfacial strength |
1 |
intermetallics |
1 |
internal stress |
1 |
intracellular delivery |
1 |
janus nanostructures |
1 |
l-j potential |
1 |
laser |
1 |
laser engraving |
1 |
laser polishing |
1 |
laser-induced plasmon |
1 |
lattice |
1 |
lattice electrodes |
1 |
lattice material |
1 |
lattice materials |
1 |
lattice thermal conductivity |
1 |
lattice-inspired structure |
1 |
lattices |
1 |
ldh |
1 |
leidenfrost-effect |
1 |
lightweight high-entropy alloy film |
1 |
lightweight structures |
1 |
liquid metals |
1 |
liquid phase separation |
1 |
low reynolds number |
1 |
lunar dust |
1 |
macroassembly |
1 |
magnetron sputtering |
1 |
mandibular prosthesis |
1 |
map4: demonstrate |
1 |
mcralx |
1 |
mechanical amorphization |
1 |
mechanical characterization |
1 |
mechanical metamaterials |
1 |
mechanical property |
1 |
mechanical recoverability |
1 |
mechanical testing |
1 |
mechanics |
1 |
membrane disruption |
1 |
mems |
1 |
meso-lattice composites |
1 |
metabolomics |
1 |
metal-free |
1 |
metallic glass |
1 |
metallic glass microwires |
1 |
metallic thin film coating |
1 |
metallurgy |
1 |
metamaterials |
1 |
mg alloy |
1 |
micro-/nano-fluidics |
1 |
microdevices |
1 |
microelectromechanical systems (mems) |
1 |
microfiber |
1 |
microfluidics |
1 |
microlattice metamaterial |
1 |
micromechanical device |
1 |
micromechanical model |
1 |
micromechanical testing |
1 |
micromechanics |
1 |
micropillar compression |
1 |
microspheres |
1 |
microstrain |
1 |
microstructural evolution |
1 |
microstructure characterization |
1 |
microstructure evolution |
1 |
misfit |
1 |
mixing |
1 |
mnco-ldh |
1 |
mno nanowire 2 |
1 |
mo c nanozyme 2 |
1 |
mo4/3b2−x nanoscaffold |
1 |
mof |
1 |
molecular dynamics |
1 |
molecular dynamics (md) |
1 |
molecular dynamics simulation |
1 |
molten salts |
1 |
monolayer graphene |
1 |
multi-component alloy |
1 |
multi-principal element alloy |
1 |
multi-scale mechanical characterization |
1 |
multilayer coating |
1 |
multilayer graphene |
1 |
multiscale structure |
1 |
multiwall carbon nanotube |
1 |
multiwall carbon nanotubes |
1 |
nano generator |
1 |
nano welding |
1 |
nano-composites |
1 |
nano-fatigue |
1 |
nano-manufacturing |
1 |
nanocomposite piezoresistive sensor |
1 |
nanocrystalline |
1 |
nanoelectronics |
1 |
nanogap |
1 |
nanograined structure |
1 |
nanoindenter |
1 |
nanolattice |
1 |
nanolayered composites |
1 |
nanomanipulation |
1 |
nanomaterials |
1 |
nanopolycrystalline |
1 |
nanoprecipitates |
1 |
nanostructured al film |
1 |
nanotechnology |
1 |
nanotwin |
1 |
nanotwin diamond |
1 |
nanotwins and 9r phase |
1 |
nanowelding |
1 |
nanowires |
1 |
natural overlays |
1 |
negative poisson's ratio |
1 |
negative poisson's ratio (npr) microlattice |
1 |
negative thermal expansion |
1 |
nems |
1 |
neutron diffraction |
1 |
ni nanoparticles |
1 |
ni nanowire |
1 |
nickel nanowire |
1 |
nickel wire |
1 |
nickel-cobalt double hydroxides |
1 |
nico o 2 4 |
1 |
nicu alloys |
1 |
nio |
1 |
nitride thin film |
1 |
nitrogen doping |
1 |
noncontact manipulation |
1 |
nonlocal elastic theory |
1 |
notched 2.5d woven composites |
1 |
nuclear materials |
1 |
nucleation |
1 |
numerical simulation |
1 |
ods coating |
1 |
optical fabrication |
1 |
optimization design |
1 |
optoelectronics |
1 |
oriented attachment |
1 |
osmosis |
1 |
oxidation |
1 |
oxygen evolution reaction |
1 |
p3 oxide |
1 |
passive protection technology |
1 |
pen-ink electrode |
1 |
perovskite nanowire |
1 |
phonon scattering |
1 |
photocatalytic co reduction 2 |
1 |
piezoresistive |
1 |
piezoresistive sensor |
1 |
planar heterogeneous structure |
1 |
plasma enhancement |
1 |
plastic deformation |
1 |
plasticity |
1 |
point contact reaction |
1 |
poiseuille flow |
1 |
polylactide |
1 |
polymer composite |
1 |
polymeric reinforcement |
1 |
porous structure |
1 |
post-treatment |
1 |
powder bed fusion (pbf) |
1 |
power electronics |
1 |
pressure sensor |
1 |
programmable pathway |
1 |
projection micro-stereolithography (pμsl) |
1 |
propulsion |
1 |
protein chimeras |
1 |
protein-based materials |
1 |
pulley-type contacts |
1 |
pulse rate |
1 |
pyrolysis |
1 |
quantum sensing |
1 |
ravinelike coni s 2 4 |
1 |
reaction mechanism |
1 |
real volume fraction |
1 |
recent development |
1 |
recoverability |
1 |
recrystallization |
1 |
rehabilitation |
1 |
relative humidity |
1 |
reliability |
1 |
resolved shear stress |
1 |
rotating magnetic field |
1 |
scar removing |
1 |
second phase strengthening |
1 |
self-assembly |
1 |
self-healing |
1 |
self-limiting welding |
1 |
senor |
1 |
service |
1 |
shear band initiation |
1 |
silicon carbide |
1 |
silver fabrics |
1 |
silver nanowires |
1 |
single-fiber pull-out |
1 |
single-layer mos2 |
1 |
slip length |
1 |
smart applications |
1 |
sodium-ion batteries |
1 |
soft |
1 |
soft matter |
1 |
specific energy absorption |
1 |
spray-on sensor |
1 |
stacking fault |
1 |
stereolithography |
1 |
stereolithography (sla) 3d printing |
1 |
stiff |
1 |
strain engineering |
1 |
strain rate sensitivity |
1 |
strain sensor |
1 |
strength-ductility synergy |
1 |
stretchable electronics |
1 |
structural design |
1 |
structural metamaterials |
1 |
subdisordered nanostructure |
1 |
supercapacitor |
1 |
supercapacitors |
1 |
surface creep |
1 |
surface mechanical attrition treatment (smat) |
1 |
synchrotron x-ray scattering |
1 |
syntactic foams |
1 |
tandem catalysis |
1 |
temperature |
1 |
tension behaviors |
1 |
terahertz sensors |
1 |
testing method |
1 |
testing technique |
1 |
theoretical modeling |
1 |
thermal barrier coatings |
1 |
thermal barrier coatings (tbcs) |
1 |
thermal conductivity |
1 |
thermal instability |
1 |
thermal properties |
1 |
thermal sensor |
1 |
thermoacoustic devices |
1 |
thermoelectric material |
1 |
thermoelectrics |
1 |
thin film |
1 |
thin film coating |
1 |
tial-based alloy |
1 |
titanium dioxide |
1 |
topology optimization |
1 |
toughness |
1 |
tri-phase lattice |
1 |
tubular silica microfiber |
1 |
tumbling motion |
1 |
twin boundaries |
1 |
twisted bilayer graphene |
1 |
twistronics |
1 |
two-dimensional (2d) materials |
1 |
two-photon lithography (tpl) |
1 |
ultra-strength |
1 |
ultrafast response |
1 |
ultrathin au nanowires |
1 |
ultrathin gold nanowire |
1 |
ultrathin gold nanowires |
1 |
ultrathin nanowire |
1 |
uniform rotating magnetic field |
1 |
unmanned aerial vehicle (uav) |
1 |
viscoelasticity |
1 |
voids |
1 |
vortex flow |
1 |
w/o/w double emulsion droplet |
1 |
water splitting |
1 |
wearable electronics |
1 |
weibull modulus |
1 |
wire bonding |
1 |
wood |
1 |
wound healing |
1 |
yield strength |
1 |
yttria stabilized zirconia (ysz) |
1 |
zr alloying |
1 |