Conventional polyurethane fiber (CPUF) has been widely
used in
clothes, but it is difficult to color CPUF into a deep hue with acid
dyes. In this work, it is proposed that polyurethane is synthesized
using dicyclohexylmethane-4,4′-diisocyanate (HMDI) and N-tert-butyldiethanolamine (TBDEA), named
poly(HMDI-TBDEA), and is added to a CPUF spinning solution to prepare
a modified polyurethane fiber (MPUF) which has an enhanced dyeability
toward acid dyes. It is assumed that poly(HMDI-TBDEA) brings tertiary
amine groups and tert-butyl groups to MPUF, of which
the tertiary amine groups can be protonated under acidic conditions
and electrostatically adsorbs anionic ions of acid dyes, and the tert-butyl groups disrupt the ordered arrangement of hard
segments in polyurethane to increase the accessible area for acid
dyes. The synthesis of poly(HMDI-TBDEA) was validated by proton and
carbon nuclear magnetic resonance spectroscopy (1H and 13C NMR) and gel permeation chromatography. MPUF was characterized
by differential scanning calorimetry, thermogravimetry, X-ray diffraction,
and the tensile test. The study revealed that the addition of poly(HMDI-TBDEA)
disrupted the ordered arrangement of the hard segments and strengthened
the soft segments but had no obvious influence on the thermal stability.
In comparison with CPUF, MPUF exhibited approximately the same elastic
recovery, despite a drop in the elongation at break and the break
strength. The zeta potential test demonstrated that MPUF might be
protonated for enhanced electropositivity under acidic conditions.
MPUF displayed superior dyeability than CPUF when dyed with C.I. Acid
Orange 7 at pH 3.
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