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首页> 外文期刊>RSC Advances >Synthesis and characterization of novel star-branched polyimides derived from 2,2-bis[4-(2,4-diaminophenoxy)phenyl]hexafluoropropane
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Synthesis and characterization of novel star-branched polyimides derived from 2,2-bis[4-(2,4-diaminophenoxy)phenyl]hexafluoropropane

机译:2,2-双[4-(2,4-二氨基苯氧基)苯基]六氟丙烷衍生的新型星形支化聚酰亚胺的合成与表征

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A novel aromatic fluorinated tetramine, 2,2-bis[4-(2,4-diaminophenoxy)phenyl]hexafluoropropane (BDAPFP), was successfully synthesized. To maximize the advantages of the linear polyimides and hyperbranched polyimides, a series of novel star-branched fluorinated polyimides BPI-(1–3), which were derived from BDAPFP and anhydride-terminated linear poly(amide acid)s LPAA′-(1–3), were successfully synthesized. For comparison, a series of corresponding linear polyimides LPI-(1–3) were prepared from 4,4′-oxybisbenzenamine (ODA), p-phenylenediamine (PDA) and 3,3′,4,4′-biphenyltetracarboxylic dianhydride (BPDA) with various monomer ratios via the conventional two-step procedure with heating, imidization method. All the polyimides could form strong, flexible and transparent films with an UV-visible absorption cut-off wavelength at 366–398 nm. When compared with the linear polyimide films LPI-(1–3), the star-branched fluorinated polyimide films BPI-(1–3) not only possessed better thermal stability with glass transition temperatures of 283.0–318.0 °C and 5% weight loss temperatures of 544–578 °C and 500–560 °C in nitrogen and air, respectively, but also had improved mechanical properties with tensile strengths of 113–243 MPa, elongation at break of 9.44–9.70% and tensile modulus of 2.09–3.74 GPa. Moreover, the star-branched polyimide films BPI-(1–3) exhibited lower water absorptions of 0.35–0.52%, better dielectric properties with lower dielectric constants of 2.72–3.12 and lower dielectric losses of 0.0028–0.0040 at 1000 kHz.
机译:成功合成了一种新型的芳香族氟化四胺2,2-双[4-(2,4-二氨基苯氧基)苯基]六氟丙烷(BDAPFP)。为了最大化线性聚酰亚胺和超支化聚酰亚胺的优势,一系列新的星形支链氟化聚酰亚胺BPI-(1-3)衍生自BDAPFP和酸酐端基的线性聚(酰胺酸)s LPAA'-(1 –3),已成功合成。为了进行比较,由4,4'-氧双苯甲胺(ODA), p -苯二胺(PDA)和3,3',4制备了一系列相应的线性聚酰亚胺LPI-(1-3),通过常规的两步加热加亚胺化方法,以 各种单体比例合成4'-联苯四甲酸二酐(BPDA)。所有的聚酰亚胺都可以形成坚固,柔性和透明的薄膜,其紫外可见吸收截止波长为366–398 nm。与线性聚酰亚胺薄膜LPI-(1-3)相比,星形支链氟化聚酰亚胺薄膜BPI-(1-3)不仅具有更好的热稳定性,玻璃化转变温度为283.0-318.0°C,重量损失为5%。氮气和空气中的温度分别为544–578°C和500–560°C,但机械性能有所改善,拉伸强度为113–243 MPa,断裂伸长率为9.44–9.70%,拉伸模量为2.09–3.74 GPa。此外,星形支化聚酰亚胺薄膜BPI-(1-3)的吸水率较低,为0.35-0.52%,介电常数较好,介电常数为2.72-3.12,1000 kHz时介电损耗为0.0028-0.0040。

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