A novel gas sensor from poly(ethylene glycol)-grafted carbon black. Responsibility of electric resistance of poly(ethylene glycol)-grafted carbon black against humidity and solvent vapor
Citation
M. Okazaki et al., A novel gas sensor from poly(ethylene glycol)-grafted carbon black. Responsibility of electric resistance of poly(ethylene glycol)-grafted carbon black against humidity and solvent vapor, POLYM J, 31(8), 1999, pp. 672-676
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
POLYMER JOURNAL
SICI code
0032-3896(1999)31:8<672:ANGSFP>2.0.ZU;2-X
Abstract
Poly(ethylene glycol) (PEG) having different molecular weight was successfu
lly grafted onto carbon black surface by direct condensation of terminal hy
droxyl groups of PEG with carboxyl groups on the surface using N,N'-dicyclo
hexylcarbodiimide as a condensing agent. The electric resistance of a compo
site prepared from PEG and PEG-grafted carbon black drastically increased t
o 10(3)-10(4) times of initial resistance in humidity and vapor of methanol
, and ethanol, which are good solvent of PEG, and returned immediately to i
nitial resistance when it was transferred in dry air. But the change of ele
ctric resistance of the composite was hardly observed in hexane and toluene
vapor, which are pool solvent of PEG. The logarithm of electric resistance
is linearly proportional to relative humidity. The sensitivity of electric
resistance decreased with increasing molecular weight of PEG. In addition,
the electric resistance of the composite from PEG-grafted carbon black los
t the responsibility against solvent vapor above melting point of PEG. By c
rosslinking of the composite from PEG-grafted carbon black with triisocyana
te, the responsibility against solvent vapor disappeared completely. These
results indicated that the crystalline structure of PEG plays an important
role on the responsibility of electric resistance of PEG-grafted carbon bla
cks against humidity and alcohol vapor.