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Excellent performance of aromatic polyguanamines induced by multiple hydrogen bondable tetraazacalix[2]arene[2]-triazine ring in their main chain

机译:在其主链中由多个氢可粘结的四氮藻[2]芳烃[2] - 三嗪环诱导的芳族聚胍胺的优异性能

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摘要

A series of poly(guanamine) (c-PG)s containing tetraazacalix[2]arene[2]-triazine (mPDA(2)CyC(2)) were successfully prepared by solution polycondensation of mPDA(2)CyC(2) with various aromatic diamines in an aprotic organic solvent with a lithium chloride additive (5 wt%) at 150 degrees C for 6 hours. The number-average molecular weights (M-n)s of these c-PG polymers reached up to 31 500, with a relatively broad molecular weight distribution (M-w/M-n) of 5.3. They showed good solubility in aprotic organic solvents, such as N-methylpyrrolidone and N,N-dimethylacetamide at a concentration of 2 mg mL(-1). The glass transition temperatures (T-g) of the c-PG polymers were in the range 359 degrees C-392 degrees C, approximately 160 degrees C higher than those of counterpart polymers (i.e., with no aza-calixarene-based PG (l-PG)). The coefficients of thermal expansion (CTEs) of the c-PG polymers were 29.7-48.1 ppm K-1 (at 100 degrees C-150 degrees C), much lower than those of l-PG samples, i.e., 59.1-85.1 ppm K-1. Transparent and almost colorless c-PG films were successfully prepared by a solution casting method, showing maximum tensile strength (sigma(S)), modulus (E-gamma), and elongation at break (E-b) values of 151 MPa, 6.3 GPa, and 4.4%, respectively, for the c-PG polymer from mPDA(2)CyC(2) and 4,4 '-oxydianiline monomers. The corresponding l-PG film exhibited sigma(S), E-gamma, and E-b values of just 76 MPa, 5.4 GPa, and 1.6%, respectively. These outstanding thermal and mechanical properties of the c-PG polymers can be attributed to their multiple hydrogen bonding interaction between mPDA(2)CyC(2) residues in the polymer backbone. This interaction was identified by infrared spectroscopy measurements at the broad absorption band around 3000-3400 cm(-1).
机译:通过MPDA(2)Cyc(2)的溶液,成功制备了一系列含有四唑啉基[2]芳烃[2] - 三嗪(MPDA(2)CYC(2))的聚(胍胺)(C-PG)S(MPDA(2)CYC(2))在非质子有机溶剂中的各种芳族二胺,氯化锂添加剂(5wt%),在150℃下持续6小时。这些C-PG聚合物的数均分子量(M-N)达到高达31 500,具有相对宽的分子量分布(M-W / M-N),为5.3。它们在非质子有机溶剂中显示出良好的溶解性,例如N-甲基吡咯烷酮和N,N-二甲基乙酰胺,其浓度为2mgml(-1)。 C-PG聚合物的玻璃化转变温度(Tg)在359℃-392℃的范围内,大约160℃高于对应聚合物(即,没有Aza-Calixarene的PG(L-Pg )))。 C-PG聚合物的热膨胀(CTE)系数为29.7-48.1ppm k-1(100摄氏度,在100摄氏度下),远低于L-PG样品,即59.1-85.1ppm k -1。通过溶液铸造方法成功制备透明且几乎无色C-PG膜,显示出最大拉伸强度(Sigma),模量(E-Gamma)和断裂(EB)值为151MPa,6.3GPa的伸长率,分别为来自MPDA(2)Cyc(2)和4,4'-氧基硅胺单体的C-Pg聚合物的4.4%。相应的L-PG膜分别显示出σ,E-Gamma和E-B值仅为76MPa,5.4GPa和1.6%。 C-Pg聚合物的这些出色的热和机械性能可归因于它们在聚合物主链中的MPDA(2)Cyc(2)残基之间的多个氢键相互作用。通过约3000-3400cm(-1)的宽吸收带,通过红外光谱测量识别该相互作用。

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  • 来源
    《RSC Advances》 |2020年第3期|共10页
  • 作者单位

    Iwate Univ Fac Sci &

    Engn Dept Chem &

    Biol Sci 4-3-5 Ueda Morioka Iwate 0208551 Japan;

    Iwate Univ Fac Sci &

    Engn Dept Chem &

    Biol Sci 4-3-5 Ueda Morioka Iwate 0208551 Japan;

    Saitama Univ Grad Sch Sci &

    Engn Sakura Ku 255 Shimo Okubo Saitama 3388570 Japan;

    Iwate Univ Fac Sci &

    Engn Dept Chem &

    Biol Sci 4-3-5 Ueda Morioka Iwate 0208551 Japan;

    Iwate Univ Fac Sci &

    Engn Dept Chem &

    Biol Sci 4-3-5 Ueda Morioka Iwate 0208551 Japan;

    Iwate Univ Fac Sci &

    Engn Dept Chem &

    Biol Sci 4-3-5 Ueda Morioka Iwate 0208551 Japan;

    Iwate Univ Fac Sci &

    Engn Dept Chem &

    Biol Sci 4-3-5 Ueda Morioka Iwate 0208551 Japan;

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  • 正文语种 eng
  • 中图分类 化学;
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