photoluminescence |
11 |
zinc oxide |
10 |
physics engineering |
9 |
nanoparticles |
8 |
block copolymers |
7 |
dye-sensitized solar cells |
7 |
gold |
7 |
oxides |
7 |
toxicity |
7 |
animals |
6 |
antibacterial activity |
6 |
bioactive bone cement |
6 |
ecotoxicity |
6 |
humans |
6 |
materials testing |
6 |
metal oxide nanoparticles |
6 |
oled |
6 |
rabbits |
6 |
rhenium |
6 |
scanning electron microscopy |
6 |
solar cells |
6 |
strontium |
6 |
thin films |
6 |
tris-(8-hydroxyquinoline) aluminium |
6 |
zno |
6 |
amino acid |
5 |
atomic force microscopy |
5 |
b1. nanomaterials |
5 |
b1. oxides |
5 |
b1. zinc compounds |
5 |
biocompatible materials |
5 |
biodegradation, environmental |
5 |
biomechanics |
5 |
bone cements - chemical synthesis - therapeutic use |
5 |
bone cements - chemistry - pharmacology - standards |
5 |
bone formation |
5 |
bone remodeling |
5 |
bone remodeling - drug effects |
5 |
carbon material devices |
5 |
cell adhesion - drug effects |
5 |
cell proliferation - drug effects |
5 |
cells, cultured |
5 |
conjugated polymers |
5 |
cytotoxicity |
5 |
durapatite |
5 |
durapatite - therapeutic use |
5 |
electroluminescence |
5 |
fractures, spontaneous - etiology - therapy |
5 |
gold materials |
5 |
ilium |
5 |
kyphoplasty |
5 |
metal-polymer complexes |
5 |
mgo nanoparticles |
5 |
morphology |
5 |
nanomaterials |
5 |
neovascularization, physiologic - drug effects |
5 |
organic semiconductors |
5 |
osseointegration |
5 |
osseointegration - drug effects |
5 |
osteoblasts - cytology - drug effects |
5 |
osteoblasts - drug effects - metabolism - ultrastructure |
5 |
osteoconductive |
5 |
osteoporosis - complications |
5 |
osteoporotic spine fracture |
5 |
photovoltaic |
5 |
photovoltaic cells |
5 |
pilot projects |
5 |
polymers |
5 |
polymethyl methacrylate |
5 |
proteomics |
5 |
spinal fractures - therapy |
5 |
strontium - therapeutic use |
5 |
strontium hydroxyapatite nanorod |
5 |
strontium-containing hydroxyapatite |
5 |
titanium |
5 |
vertebroplasty |
5 |
a. powders: chemical preparation |
4 |
a1. nanomaterials |
4 |
a1. nanostructures |
4 |
antimicrobial activity |
4 |
b2. semiconducting ii-vi materials |
4 |
d. apatite |
4 |
e. biomedical applications |
4 |
hybrid nanoparticles |
4 |
hybrid solar cells |
4 |
ii-vi semiconductors |
4 |
iron oxide |
4 |
ito surface treatment |
4 |
layered double hydroxide |
4 |
lead removal |
4 |
magnesium leaching |
4 |
membrane |
4 |
metal oxides |
4 |
morphology control |
4 |
nano-composite |
4 |
nanorods |
4 |
nanosphere |
4 |
nanostructures |
4 |
nanowire |
4 |
octahedron |
4 |
optoelectronic devices |
4 |
organic light emitting diodes |
4 |
organic nanostructures |
4 |
perovskite |
4 |
phase contrast |
4 |
photovoltaics |
4 |
porosity |
4 |
self-assembly |
4 |
sno2 |
4 |
spinel ferrite |
4 |
temperature |
4 |
titanium dioxide |
4 |
tunable size |
4 |
a. nanostructures |
3 |
a. oxides |
3 |
alkyne |
3 |
alq 3 |
3 |
atomic force microscopy (afm) |
3 |
atomic layer deposition |
3 |
azo compounds - chemistry |
3 |
bactericidal coatings |
3 |
bi-layer |
3 |
biological applications of polymers |
3 |
bulk heterojunction solar cells |
3 |
carbon nanotubes |
3 |
catalysis |
3 |
chemical synthesis |
3 |
citric acid |
3 |
controlled radical polymerization |
3 |
copper phthalocyanine |
3 |
defects |
3 |
desorption |
3 |
device design |
3 |
diblock copolymers |
3 |
dopant precursors |
3 |
dssc |
3 |
electrical measurements and properties |
3 |
electrochemical properties |
3 |
electrochemistry |
3 |
electrodeposition |
3 |
encapsulation |
3 |
energy conversion |
3 |
evaporation |
3 |
fatty acid |
3 |
film thickness |
3 |
flexible solar cells |
3 |
fullerene |
3 |
growth conditions |
3 |
hydrothermal |
3 |
hydrothermal treatments |
3 |
hyperbranched polymers |
3 |
impurity concentration |
3 |
indium tin oxide surface treatment |
3 |
inorganic nanostructures |
3 |
ito treatments |
3 |
led |
3 |
light-emitting diodes |
3 |
magnetic nanoparticle |
3 |
metallopolymer |
3 |
microcavity |
3 |
morphology evolution |
3 |
n-nanorods |
3 |
nanocomposite |
3 |
nanocomposites |
3 |
nanofabrication |
3 |
native defect |
3 |
nitrate precursors |
3 |
nvinylcarbazole |
3 |
oleds |
3 |
optical properties |
3 |
organic electronics |
3 |
organic light emitting diode |
3 |
organic microcavity light emitting diodes |
3 |
organic solar cells |
3 |
organometallic halide perovskite |
3 |
p(s-b-mma) |
3 |
phase separation |
3 |
photocatalysis |
3 |
photochemical processes |
3 |
photoconductivity |
3 |
photoconductor |
3 |
photoluminsescence |
3 |
photophysics |
3 |
photovoltaic devices |
3 |
plasma treatment |
3 |
polymer solar cells |
3 |
rhenium(i) carbonyl complexes |
3 |
ruthenium terpyridine complexes |
3 |
self-assembled |
3 |
sensitizers |
3 |
size |
3 |
solar cell |
3 |
spectroscopic ellipsometry |
3 |
stability |
3 |
stability testing |
3 |
tio2 |
3 |
titanium - chemistry |
3 |
transition metal |
3 |
vapor deposition |
3 |
x-ray diffraction |
3 |
xrd |
3 |
zno nanoparticles |
3 |
absorption |
2 |
ambient illumination |
2 |
anti-bacterial activity |
2 |
atom transfer radical polymerization |
2 |
atr ftir |
2 |
bis(arylimino)acenaphthene |
2 |
bithiazole |
2 |
blends |
2 |
blue emission |
2 |
carbon nanotube composites |
2 |
cell walls |
2 |
cesium doping |
2 |
charge transfer |
2 |
component: photovoltaic |
2 |
conjugated polymer |
2 |
copper doping |
2 |
crystal structure |
2 |
current voltage curve |
2 |
cyclopentadithiophenone |
2 |
degradation |
2 |
dft calculations |
2 |
donor-acceptor compounds |
2 |
e-beam deposition |
2 |
electrolytes |
2 |
electron transfer |
2 |
electron transport layer |
2 |
electrostatic self-assembly |
2 |
energy transfer |
2 |
ethylenedioxythiophene |
2 |
field emission |
2 |
films |
2 |
finite-difference time-domain |
2 |
functionalized nanoparticles |
2 |
g-c3n4 long-lived charge separation |
2 |
gallium nitride |
2 |
gold nanoparticles |
2 |
green emission |
2 |
hydrothermal growth |
2 |
hydrothermal synthesis |
2 |
hyperbranched |
2 |
in2o3 |
2 |
indium tin oxide |
2 |
indium-tin-oxide |
2 |
instruments |
2 |
inverted solar cells |
2 |
layer-by-layer deposition |
2 |
light emission |
2 |
light emitting diodes |
2 |
light harvesting |
2 |
light out-coupling |
2 |
light trapping |
2 |
low bandgap |
2 |
luminescence |
2 |
luminesence |
2 |
metal complexes |
2 |
metal-containing polymer |
2 |
metal-containing polymers |
2 |
metallomacrocycle |
2 |
metallopolymers |
2 |
metallopolyynes |
2 |
mgo |
2 |
nanostructures - chemistry - ultrastructure |
2 |
nickel oxide |
2 |
nio |
2 |
oligothiophene |
2 |
optical and photovoltaic applications |
2 |
optical constants |
2 |
optical phenomena |
2 |
optics |
2 |
organic 1d structures |
2 |
organic polymers |
2 |
organic thin films |
2 |
organic–inorganic halide perovskites |
2 |
organometallic halide perovskites |
2 |
p3ht:pcbm |
2 |
pendant |
2 |
periodic nanorod array |
2 |
perovskite light‐emitting diodes |
2 |
perovskite solar cells |
2 |
phenanthrenyl-imidazole |
2 |
phenothiazine |
2 |
phosphorescence |
2 |
photo-catalytic |
2 |
photoluminescence spectrum |
2 |
photosensitizer |
2 |
photovoltaic device |
2 |
physics |
2 |
plasmonic effect |
2 |
platinum |
2 |
platinum(ii) polyynes |
2 |
poly(p-phenylenevinylene) |
2 |
polymer films |
2 |
polyurethanes |
2 |
polyynes |
2 |
quasi‐2d perovskites |
2 |
reactive oxygen species |
2 |
rhenium complex |
2 |
rhenium(i) |
2 |
ruddlesden–popper |
2 |
ruddlesden–popper perovskites |
2 |
ruthenium complex |
2 |
ruthenium complexes |
2 |
ruthenium containing polymer |
2 |
scattering |
2 |
sputtering |
2 |
surface modification |
2 |
surface treatment |
2 |
swcnt |
2 |
tetranuclear cu(i) cluster |
2 |
thiophene |
2 |
time-resolved spectroscopy |
2 |
tio 2 |
2 |
transient absorption |
2 |
transient absorption spectroscopy |
2 |
transition metal complexes |
2 |
tris (8-hydroxyquinoline) aluminum |
2 |
vapour deposition |
2 |
visible-nir photocatalysis |
2 |
water - chemistry |
2 |
zigzag chain |
2 |
5-fluorouracil response proteins |
1 |
aged |
1 |
annealing condition |
1 |
antihypertensive agents - adverse effects |
1 |
asian continental ancestry group |
1 |
backward diodes |
1 |
bipyridine |
1 |
carbon nanotube |
1 |
cds nanoparticles |
1 |
charge mobility |
1 |
colorectal cancer |
1 |
conducting materials |
1 |
data interpretation, statistical |
1 |
diuretics - adverse effects |
1 |
drug prescriptions - statistics & numerical data |
1 |
drug utilization |
1 |
emission spectrums |
1 |
epiwafers |
1 |
fabrication |
1 |
female |
1 |
functional ligands |
1 |
functionalized multi-walled carbon nanotubes |
1 |
gan epitaxial films |
1 |
heterocycles |
1 |
highly efficient oleds |
1 |
hong kong |
1 |
hospitals, teaching |
1 |
hypokalemia - chemically induced - ethnology |
1 |
indapamide - adverse effects |
1 |
macromolecular substances - chemistry |
1 |
male |
1 |
mass spectrometry |
1 |
metal containing polymer |
1 |
middle aged |
1 |
multilayer films |
1 |
n ligands |
1 |
nanostructures - chemistry |
1 |
opto-electronics |
1 |
organic electroluminescence |
1 |
organic-inorganic |
1 |
organometallic compounds - chemistry |
1 |
outpatient clinics, hospital |
1 |
phosphorescent materials |
1 |
photovoltaic effect |
1 |
physician's practice patterns |
1 |
physics engineering chemistry |
1 |
pl |
1 |
polystyrenes - chemistry |
1 |
polyvinyls - chemistry |
1 |
potassium - blood |
1 |
ppv |
1 |
pyridines - chemistry |
1 |
rhenium - chemistry |
1 |
ruthenium |
1 |
ruthenium bipyridine complex |
1 |
ruthenium containing polymers |
1 |
sw480 |
1 |
terpyridine |
1 |
two-dimensional electrophoresis |
1 |