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首页> 外文期刊>ACS applied materials & interfaces >1,2,3-Triazole-Functionalized Polysulfone Synthesis through Microwave-Assisted Copper-Catalyzed Click Chemistry: A Highly Proton Conducting High Temperature Membrane
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1,2,3-Triazole-Functionalized Polysulfone Synthesis through Microwave-Assisted Copper-Catalyzed Click Chemistry: A Highly Proton Conducting High Temperature Membrane

机译:微波辅助铜催化点击化学合成1,2,3-三唑官能化聚砜:高质子传导高温膜

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摘要

Microwave heating holds all the aces regarding development of effective and environmentally friendly methods to perform chemical transformations. Coupling the benefits of microwave-enhanced chemistry with highly reliable copper-catalyzed azide-alkyne cycloaddition (CuAAC) click chemistry paves the way for a rapid and efficient synthesis procedure to afford high performance thermoplastic materials. We describe herein fast and high yielding synthesis of 1,2,3-triazole-functionalized polysulfone through microwave-assisted CuAAC as well as explore their potential as phosphoric acid doped polymer electrolyte membranes (PEM) for high temperature PEM fuel cells. Polymers with various degrees of substitution of the side-chain functionality of 1,4-substituted 1,2,3-triazole with alkyl and aryl pendant structures are prepared by sequential chloromethylation, azidation, and microwave assisted CuAAC using a range of alkynes (1-pentyne, 1-nonyne, and phenylacetylene). The completeness of reaction at each step and the purity of the clicked polymers were confirmed by H-1-C-13 NMR, DOSY-NMR. and FTIR-ATR spectroscopies. The thermal and thermochemical properties of the modified polymers were characterized by differential scanning calorimetry and thermogravimetric analysis coupled with mass spectroscopy (TG-MS), respectively. TG-MS analysis demonstrated that the commencement of the thermal degradation takes place with the decomposition of the triazole ring while its substituents have critical influence on the initiation temperature. Polysulfone functionalized with 4-phenyl-1,2,3-triazole demonstrates significantly higher T-g, T-d, and elastic modulus than the ones bearing 4-propyl-1,2,3-triazole and 4-heptyl-1,2,3-triazole groups. After doping with phosphoric acid, the functionalized polymers with acid doping level of 5 show promising performance with high proton conductivity in anhydrous conditions (in the range of 27-35 mS/cm) and satisfactorily high elastic modulus (in the range of 332-349 MPa).
机译:微波加热具有发展有效和环境友好的方法进行化学转化的所有能力。微波增强化学的优势与高度可靠的铜催化的叠氮化物-炔烃环加成(CuAAC)的点击化学相结合,为快速高效地合成工艺以提供高性能热塑性材料铺平了道路。我们在本文中描述了通过微波辅助CuAAC快速,高产率地合成1,2,3-三唑官能化聚砜,并探讨了其作为磷酸掺杂的聚合物电解质膜(PEM)用于高温PEM燃料电池的潜力。通过一系列的炔烃依次进行氯甲基化,叠氮化和微波辅助的CuAAC制备具有1,4-取代的1,2,3-三唑具有烷基和芳基侧基结构的侧链官能度不同取代度的聚合物(1 -戊炔,1-壬炔和苯乙炔)。通过H-1-C-13 NMR,DOSY-NMR确认各步骤的反应完成度和点击的聚合物的纯度。和FTIR-ATR光谱仪。改性聚合物的热和热化学性质分别通过差示扫描量热法和热重分析结合质谱法(TG-MS)进行表征。 TG-MS分析表明,热降解的开始是随着三唑环的分解而发生的,而其取代基对引发温度有关键影响。用4-苯基-1,2,3-三唑官能化的聚砜显示出比带有4-丙基-1,2,3-三唑和4-庚基-1,2,3-的那些具有更高的Tg,Td和弹性模量。三唑基团。掺入磷酸后,酸掺杂水平为5的功能化聚合物在无水条件下(27-35 mS / cm范围内)具有高质子传导性和令人满意的高弹性模量(在332-349范围内)表现出良好的性能。 MPa)。

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