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Phosphine Oxide Containing Poly(pyridinium salt)s as Fire Retardant Materials

机译:含聚吡啶盐的氧化膦作为阻燃材料

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摘要

Six new rugged, high-temperature tolerant phosphine oxide-containing poly(4,4′-(p-phenylene)-bis(2,6-diphenylpyridinium)) polymers >P-1, >P-2, >P-3, >P-4, >P-5, and >P-6 are synthesized, characterized, and evaluated. Synthesis results in high yield and purity, as confirmed by elemental, proton (1H), and carbon 13 (13C) nuclear magnetic resonance (NMR) spectra analyses. High glass transition temperatures (Tg > 230 °C) and high char yields (>50% at 700 °C) are determined by differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA), respectively. These new ionic polymers exhibit excellent processability, thin-film forming, high-temperature resistance, fire-resistance and retardation, coating, adhesion, mechanical and tensile strength, and n-type (electron transport) properties. The incorporation of phosphine oxide and bis(phenylpyridinium) moieties in the polymer backbones leads to high glass transition temperatures and excellent fire retardant properties, as determined by microcalorimetry measurements. The use of organic counterions allows these ionic polymers to be easily processable from several common organic solvents. A large variety of these polymers can be synthesized by utilizing structural variants of the bispyrylium salt, phosphine oxide containing diamine, and the counterion in a combinatorial fashion. These results make them very attractive for a number of applications, including as coating and structural component materials for automobiles, aircrafts, power and propulsion systems, firefighter garments, printed circuit boards, cabinets and housings for electronic and electrical components, construction materials, mattresses, carpets, upholstery and furniture, and paper-thin coatings for protecting important paper documents.
机译:六种坚固耐用的耐高温氧化膦的聚(4,4'-(对亚苯基)-双(2,6-二苯基吡啶鎓))聚合物> P-1 ,> P -2 ,> P-3 ,> P-4 ,> P-5 和> P-6 1 H)和碳13( 13 C)核磁共振(NMR)光谱分析证实,合成可产生高产率和高纯度。分别通过差示扫描量热法(DSC)和热重分析(TGA)来确定高玻璃化温度(Tg> 230°C)和高炭产率(> 700%时> 50%)。这些新型离子聚合物具有出色的可加工性,薄膜形成性,耐高温性,耐火性和阻燃性,涂层,粘附性,机械和拉伸强度以及n型(电子传输)性能。通过微量量热法测定,在聚合物主链中引入氧化膦和双(苯基吡啶鎓)部分会导致较高的玻璃化转变温度和优异的阻燃性能。有机抗衡离子的使用使得这些离子聚合物可以容易地由几种常见的有机溶剂加工而成。可以通过以组合方式利用双吡啶鎓盐,含氧化膦的二胺和抗衡离子的结构变体来合成大量这些聚合物。这些结果使它们在许多应用中具有极大的吸引力,包括作为汽车,飞机,动力和推进系统的涂层和结构部件材料,消防员服装,印刷电路板,电子和电气部件的机柜和外壳,建筑材料,床垫,地毯,室内装潢和家具,以及用于保护重要纸质文件的薄涂料。

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