TY - JOUR
T1 - Aromatic polyamides bearing ether and isopropylidene or hexafluoroisopropylidene links in the main chain
AU - Hsiao, Sheng Huei
AU - Yu, Chou Huan
PY - 1996/10
Y1 - 1996/10
N2 - Two multiring, flexible dicarboxylic acids, 4,4'-[isopropylidenebis(1,4-phenylene)dioxy] dibenzoic acid (3) and 4,4'-[hexafluoroisopropylidenebis(1,4-phenylene)dioxy]dibenzoic acid (3-F), were synthesized through the nucleophilic fluorodisplacement of p-fluorobenzonitrile by the dipotassium bisphenolates of the corresponding bisphenol precursors followed by alkaline hydrolysis. Two series of aromatic polyamides 5a-k and 5a-k-F containing both ether and isopropylidene or hexafluoroisopropylidene linkages between phenylene units were prepared by direct polycondensation of diacids 3 and 3-F, respectively, with various aromatic diamines using triphenyl phosphite and pyridine as condensing agents in a N-methyl-2-pyrrolidone (NMP) solution containing dissolved calcium chloride. The resulting polyamides of 5 and 5-F series have inherent viscosities of 0.92-1.29 dL/g and 0.60-0.92 dL/g, respectively. Most of these polymers are amorphous in nature, are soluble in polar solvents such as NMP, N,N-dimethylacetamide (DMAc), and N,N-dimethylformamide (DMF), and can afford tough and flexible films by solution casting. Differential scanning calorimetry shows Tgs ranging from 175 to 239 °C for the 5 series polyamides and ranging from 172 to 267 °C for the 5-F series polymers. Both classes of polyamides show good thermal stability, with the 5-F series polyamides being more stable.
AB - Two multiring, flexible dicarboxylic acids, 4,4'-[isopropylidenebis(1,4-phenylene)dioxy] dibenzoic acid (3) and 4,4'-[hexafluoroisopropylidenebis(1,4-phenylene)dioxy]dibenzoic acid (3-F), were synthesized through the nucleophilic fluorodisplacement of p-fluorobenzonitrile by the dipotassium bisphenolates of the corresponding bisphenol precursors followed by alkaline hydrolysis. Two series of aromatic polyamides 5a-k and 5a-k-F containing both ether and isopropylidene or hexafluoroisopropylidene linkages between phenylene units were prepared by direct polycondensation of diacids 3 and 3-F, respectively, with various aromatic diamines using triphenyl phosphite and pyridine as condensing agents in a N-methyl-2-pyrrolidone (NMP) solution containing dissolved calcium chloride. The resulting polyamides of 5 and 5-F series have inherent viscosities of 0.92-1.29 dL/g and 0.60-0.92 dL/g, respectively. Most of these polymers are amorphous in nature, are soluble in polar solvents such as NMP, N,N-dimethylacetamide (DMAc), and N,N-dimethylformamide (DMF), and can afford tough and flexible films by solution casting. Differential scanning calorimetry shows Tgs ranging from 175 to 239 °C for the 5 series polyamides and ranging from 172 to 267 °C for the 5-F series polymers. Both classes of polyamides show good thermal stability, with the 5-F series polyamides being more stable.
KW - Aromatic polyamides
KW - Direct polycondensation
KW - Hexafluoro-isopropylidene
KW - Isopropylidene
KW - Triphenyl phosphite
UR - https://www.scopus.com/pages/publications/0030258592
U2 - 10.1007/BF01493495
DO - 10.1007/BF01493495
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AN - SCOPUS:0030258592
SN - 1022-9760
VL - 3
SP - 247
EP - 256
JO - Journal of Polymer Research
JF - Journal of Polymer Research
IS - 4
ER -