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Poly(tetramethylene oxide)-coated silica nanoparticles incorporated into poly(4,4'-oxydiphenylene-pyromellitimide) matrix

机译:聚(四甲基氧化物) - 涂覆的二氧化硅纳米粒子掺入聚(4,4'-氧二苯基 - 吡啉酰亚胺)基质中

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Telechelic poly(teramethylene oxide) with two isocyanate end groups (OCN-PTMO-NCO) was synthesized by the reaction of polytetrahydrofuran (Mn = 1000 g mor1) and hexamethylene diisocyanate in 1:2 molar ratio. The resulting macrochains were then covalently grafted to the surface of silica nanoparticles (SNPs). Thus, the inorganic nanoparticles could be thoroughly coated by a thick and soft organic shell. Thermogravimetric measurements showed that up to 85 wt.% of the organically modified SNPs (OSNPs) could be formed from the organic part. Different weight ratios of OSNPs were subsequently added to a solution of 4,4'-oxydiphenylamine/pyromellitic dianhydride poly(amic acid) (PAA) in dimethylformamide. Chemical cyclodehydration of the PAA in the presence of homogeneously dispersed OSNPs resulted in poly(4,4'-oxydiphenylene-pyromellitimide) (POPI) nanocomposites, labeled by POPI/OSNP 5, POPI/OSNP 7.5, and POPI/OSNP 10. The nanocomposites obtained were fully characterized by field emission scanning electron microscopy, Fourier transform infrared spectroscopy, and X-ray diffraction. According to the diffuse reflectance UV spectroscopy, in comparison with neat POPI, the POPI/OSNP series showed an appreciable redshift in the Amax values up to 15-20 nm. Moreover, POPI/OSNP series showed significant stability toward heat at temperatures above 540°C. The endothermic phase transitions occurred by the first thermodegradation of the resulting nanocomposites could be obviously seen in the differential thermal analysis.
机译:通过在1:2摩尔比中的聚四氟呋喃(Mn = 1000g Mor1)和六亚甲基二异氰酸酯的反应合成具有两个异氰酸酯端基(OCN-PTMO-NCO)的Telechelic poly(ocn-ptmo-nco)。然后将所得宏观共价接枝到二氧化硅纳米颗粒(SNP)的表面上。因此,无机纳米颗粒可以通过厚和软的有机壳彻底涂覆。热重测量显示,高达85重量%。有机改性的SNP(OSNP)的%可以由有机部分形成。随后将不同的重量比加入到二甲基甲酰胺中4,4'-氧二苯胺/吡甲胺二酐溶液的4,4'-羟基二苯胺/吡啉代/吡啉代苯二酐聚(AMIC酸)(PAA)的溶液中。在均匀分散的OSNP存在下PAA的化学环氢化物导致聚(4,4'-氧二苯基 - 吡咯烷酰亚胺)(POPI)纳米复合材料,由POPI / OSNP 5,POPI / OSNP 7.5和POPI / OSNP 10标记。纳米复合材料通过现场发射扫描电子显微镜,傅里叶变换红外光谱和X射线衍射得到完全表征。根据弥漫反射率UV光谱,与NEAT POPI相比,POPI / OSNP系列在AMAX值中显示出高达15-20nm的明显红移。此外,POPI / OSNP系列在高于540℃的温度下对热量稳定性稳定性。在差分热分析中可以显然可以看到由所得纳米复合材料的第一热降解发生的吸热相转变。

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