31P and 1H NMR studies of the transesterification polymerization of polyphosphonate oligomers

被引:0
|
作者
机构
[1] Dustan Myrex, R.
[2] Farmer, Brandon
[3] Gray, Gary M.
[4] Wright, Young-Jin
[5] Dees, Jennifer
[6] Bharara, Prakash C.
[7] Byrd, Houston
[8] Branham, Keith E.
来源
Gray, G.M. (gmgray@uab.edu) | 1600年 / Elsevier Ltd卷 / 39期
基金
美国国家科学基金会;
关键词
Crystallization - Elastomers - Esterification - Esters - Molecular weight - Nuclear magnetic resonance - Polycondensation - Polyesters - Ring opening polymerization - Thermoanalysis - Thermodynamic stability;
D O I
暂无
中图分类号
学科分类号
摘要
Polymeric phosphonate esters are an interesting class of organophosphorus polymers because both the polymer backbone and phosphorus substituents can be modified. These polymers have been prepared by ring-opening polymerizations of cyclic phosphites, stoichiometric polycondensations of dimethyl phosphonate with diols in conjunction with diazomethane treatment and by transesterification of polyphosphonate oligomers. Our initial attempts to prepare high molecular weight polymeric phosphonate esters by the transesterification methods were unsuccessful. Results indicate that the reactions of dimethyl phosphonate with diols to form polyphosphonate oligomers with only methyl phosphonate end groups are plagued by a serious side reaction that forms phosphonic acid end groups. These end groups do not participate in the transesterification reaction and limit the molecular weights of the polymers that can be obtained. The phosphonic acid end groups can be converted into reactive methyl phosphonate end groups by treatment with diazomethane, however diazomethane is explosive and the polymerization is slow. An alternative route for the production of high molecular weight polymers is the transesterification of the 1,12-bis(methyl phosphonato)dodecane, formed by the reaction of excess dimethyl phosphonate and 1,12-dodecanediol, with a Na2CO3 promoter. This allows polymers with molecular weights of up to 4.5 × 104 to be prepared, and no phosphonic acid end groups are observed in these polymers. Thermal analyses of the poly(1,12-dodecamethylene phosphonate) have shown that this polymer has reasonable thermal stability (onset of thermal decomposition at 273 °C). This polymer also undergoes a cold crystallization process at 15 °C similar to that which has been observed in some polyesters, polyamides and elastomers. © 2003 Elsevier Science Ltd. All rights reserved.
引用
收藏
相关论文
共 50 条
  • [21] 31P, 13C, and 1H NMR studies on chiral allyl ferrocenyldiphosphine complexes of palladium(II)
    Pregosin, P.S.
    Salzmann, R.
    Togui, A.
    Organometallics, 1995, 14 (02):
  • [22] Conformational preferences and intramolecular interactions of myo-inositol hexakisphosphoric acid by 1H and 31P NMR studies
    Paton, G
    Noailly, M
    Mossoyan, JC
    JOURNAL OF PHYSICAL ORGANIC CHEMISTRY, 1999, 12 (05) : 401 - 407
  • [23] 31P and 1H NMR as probes of domain alignment in a rigid crystalline surfactant mesophase
    Liu, LM
    John, VT
    McPherson, G
    Maskos, K
    Bose, A
    LANGMUIR, 2005, 21 (09) : 3795 - 3801
  • [24] Combined 31P and 1H NMR experiments in the structural elucidation of polynuclear thiolate complexes
    Cerrada, E
    Laguna, M
    JOURNAL OF CHEMICAL EDUCATION, 2005, 82 (04) : 630 - 633
  • [25] 13C, 31P,nd 1H NMR of some dioxaphosphinopyridines and pyridoazaphosphinines
    Ferreira, A
    Bigan, M
    Blondeau, D
    MAGNETIC RESONANCE IN CHEMISTRY, 1999, 37 (12) : 912 - 915
  • [26] Fingerprinting Krill Oil by 31P, 1H and 13C NMR Spectroscopies
    Burri, Lena
    Hoem, Nils
    Monakhova, Yulia B.
    Diehl, Bernd W. K.
    JOURNAL OF THE AMERICAN OIL CHEMISTS SOCIETY, 2016, 93 (08) : 1037 - 1049
  • [27] Coordination sites of ATP to FeIII as evidenced by a 1H and 31P NMR relaxation study
    Du, F
    Mao, XA
    Li, DF
    Liao, ZR
    POLYHEDRON, 1999, 18 (17) : 2327 - 2330
  • [28] Chiral Discrimination by a Binuclear Pd Complex Sensor Using 31P{1H} NMR
    Chen, Zhongxiang
    Yang, Mingxue
    Sun, Zhaofeng
    Zhang, Xuebo
    Xu, Jing
    Bian, Guangling
    Song, Ling
    ANALYTICAL CHEMISTRY, 2019, 91 (22) : 14591 - 14596
  • [29] Wet-lab approach to stereochemistry using 31P and 1H NMR spectroscopy
    Sculimbrene, Bianca R.
    Fenton, Owen S.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2012, 244
  • [30] On an accidental degeneracy in the 31P{1H} NMR chemical shifts in ruthenium diphosphine complexes
    Agostini Valle, Eliana Maira
    do Nascimento, Fabio Batista
    Ferreira, Antonio Gilberto
    Batista, Alzir A.
    Rodrigues Monteiro, Marcos Claudio
    Machado, Sergio de Paula
    Ellena, Javier
    Castellano, Eduardo E.
    de Azevedo, Eduardo Ribeiro
    QUIMICA NOVA, 2008, 31 (04): : 807 - 812