INIS
efficiency
100%
copolymers
100%
polymerization
100%
tin
100%
arylation
100%
performance
18%
solar cells
18%
fullerenes
18%
polymers
9%
films
9%
nmr
9%
comparative evaluations
9%
synthesis
9%
catalysts
9%
morphology
9%
defects
9%
additives
9%
toxicity
9%
charges
9%
transport
9%
power
9%
conversion
9%
electrochemistry
9%
yields
9%
microstructure
9%
solvents
9%
loading
9%
recombination
9%
xrd
9%
afm
9%
carboxylic acids
9%
methyltetrahydrofuran
9%
Chemistry
Copolymer
100%
Arylation
100%
Tin
100%
Fullerene
18%
Toxic
9%
Solar Cell
9%
Atomic Force Microscopy
9%
Carboxylic Acid
9%
Liquid Film
9%
Organotin Compound
9%
Polycondensation
9%
Molecular Mass
9%
Polymer Solar Cell
9%
NMR Spectroscopy
9%
Synthesis (Chemical)
9%
Solvent
9%
X-Ray Diffraction
9%
Electrochemical Property
9%
Additive
9%
Recombination
9%
Catalyst
9%
Material Science
Photovoltaics
100%
Polymerization
100%
Copolymer
100%
Fullerene
18%
Electrochemical Property
9%
Material
9%
Catalyst
9%
Additive
9%
Solvent
9%
Morphology
9%
Solar Cell
9%
Nuclear Magnetic Resonance
9%
Chemical Engineering
Copolymer
100%
Polymerization
100%
Tin
100%
Fullerene
18%
Polymer
9%
Polycondensation
9%