Novel optically active poly(amide-imide)s with tetrahydropyrimidinone and tetrahydro-2-thioxopyrimidine moieties by microwave-assisted polycondensation

Rapid and highly efficient synthesis of novel poly(amide‐imide)s (PAIs) were achieved under microwave irradiation by using a domestic microwave oven from the polycondensation reactions of 4,4′‐carbonyl‐bis(phthaloyl‐L‐alanine) diacid chloride [N,N′‐(4,4′‐carbonyldiphthaloyl)] bisalanine diacid chlor...

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Veröffentlicht in:Journal of applied polymer science 2001-06, Vol.80 (13), p.2416-2421
Hauptverfasser: Mallakpour, Shadpour E., Hajipour, Abdol-Reza, Faghihi, Khalil, Foroughifar, Naser, Bagheri, Javad
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container_end_page 2421
container_issue 13
container_start_page 2416
container_title Journal of applied polymer science
container_volume 80
creator Mallakpour, Shadpour E.
Hajipour, Abdol-Reza
Faghihi, Khalil
Foroughifar, Naser
Bagheri, Javad
description Rapid and highly efficient synthesis of novel poly(amide‐imide)s (PAIs) were achieved under microwave irradiation by using a domestic microwave oven from the polycondensation reactions of 4,4′‐carbonyl‐bis(phthaloyl‐L‐alanine) diacid chloride [N,N′‐(4,4′‐carbonyldiphthaloyl)] bisalanine diacid chloride (1) with six different derivatives of tetrahydropyrimidinone and tetrahydro‐2‐thioxopyrimidine compounds (2a–2f) in the presence of a small amount of a nonpolar organic medium that acts as a primary microwave absorber. Suitable organic media was o‐cresol. The polycondensation proceeded rapidly and was almost completed within 10 min, giving a series of PAIs with inherent viscosities of about 0.25–0.45 dL/g. The resulting PAIs were obtained in high yield and are optically active and thermally stable. All of the above compounds were fully characterized by means of Fourier transform infrared spectroscopy, elemental analyses, inherent viscosity (ηinh), solubility test, and specific rotation. Thermal properties of the PAIs were investigated using thermogravimetric analysis. © 2001 John Wiley & Sons, Inc. J Appl Polym Sci 80: 2416–2421, 2001
doi_str_mv 10.1002/app.1348
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Appl. Polym. Sci</addtitle><date>2001-06-24</date><risdate>2001</risdate><volume>80</volume><issue>13</issue><spage>2416</spage><epage>2421</epage><pages>2416-2421</pages><issn>0021-8995</issn><eissn>1097-4628</eissn><coden>JAPNAB</coden><abstract>Rapid and highly efficient synthesis of novel poly(amide‐imide)s (PAIs) were achieved under microwave irradiation by using a domestic microwave oven from the polycondensation reactions of 4,4′‐carbonyl‐bis(phthaloyl‐L‐alanine) diacid chloride [N,N′‐(4,4′‐carbonyldiphthaloyl)] bisalanine diacid chloride (1) with six different derivatives of tetrahydropyrimidinone and tetrahydro‐2‐thioxopyrimidine compounds (2a–2f) in the presence of a small amount of a nonpolar organic medium that acts as a primary microwave absorber. Suitable organic media was o‐cresol. The polycondensation proceeded rapidly and was almost completed within 10 min, giving a series of PAIs with inherent viscosities of about 0.25–0.45 dL/g. The resulting PAIs were obtained in high yield and are optically active and thermally stable. All of the above compounds were fully characterized by means of Fourier transform infrared spectroscopy, elemental analyses, inherent viscosity (ηinh), solubility test, and specific rotation. Thermal properties of the PAIs were investigated using thermogravimetric analysis. © 2001 John Wiley &amp; Sons, Inc. J Appl Polym Sci 80: 2416–2421, 2001</abstract><cop>New York</cop><pub>John Wiley &amp; Sons, Inc</pub><doi>10.1002/app.1348</doi><tpages>6</tpages></addata></record>
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source Wiley Online Library Journals Frontfile Complete
subjects Applied sciences
Exact sciences and technology
inherent viscosity
microwave oven
microwave-assisted rapid polycondensation
optically active polymers
Organic polymers
Physicochemistry of polymers
poly(amide-imide)s
Polycondensation
Preparation, kinetics, thermodynamics, mechanism and catalysts
title Novel optically active poly(amide-imide)s with tetrahydropyrimidinone and tetrahydro-2-thioxopyrimidine moieties by microwave-assisted polycondensation
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