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31.
Polyphenylsilsesquioxane (PPSQ) was incorporated into an epoxy resin to prepare organic–inorganic composites, and two strategies were adopted to afford composites with different morphologies. Phase separation induced by polymerization occurred in the physical blending system. However, nanostructured composites were obtained when a catalytic amount of aluminum triacetylacetonate was added to mediate the reaction between PPSQ and diglycidyl ether of bisphenol A (DGEBA). The intercomponent reaction significantly suppressed the phase separation on the micrometer scale. Organic–inorganic composites with different morphologies displayed quite different thermomechanical properties. Both differential scanning calorimetry and dynamic mechanical analysis showed that the nanostructured composites possessed higher glass‐transition temperatures than the phase‐separated composites with the same loading of PPSQ, although the intercomponent reaction between PPSQ and DGEBA reduced the crosslinking density of the epoxy matrix. This result was ascribed to the presence of nanosized PPSQ domains in the nanostructured composites, which acted as physical crosslinking sites and thus reinforced the epoxy networks. The nanoreinforcement of the PPSQ domains afforded the enhanced dynamic storage modulus for the nanostructured composites in comparison with the phase‐separated composites with a PPSQ concentration less than 15 wt %. In terms of thermogravimetric analysis, the organic–inorganic composites displayed improved thermal stability and flame retardancy. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 44: 1093–1105, 2006 相似文献
32.
Zhe Wang Hongzhe Ni Chengji Zhao Xianfeng Li Tiezhu Fu Hui Na 《Journal of Polymer Science.Polymer Physics》2006,44(14):1967-1978
The sulfonated poly(ether ether ketone sulfone) (SPEEKS)/heteropolyacid (HPA) composite membranes with different HPA content in SPEEKS copolymers matrix with different degree of sulfonation (DS) were investigated for high temperature proton exchange membrane fuel cells. Composite membranes were characterized by Fourier transfer infrared spectroscopy (FTIR) and scanning electron microscopy (SEM). FTIR band shifts suggested that the sulfonic acid groups on the copolymer backbone strongly interact with HPA particles. SEM pictures showed that the HPA particles were uniformly distributed throughout the SPEEKS membranes matrix and particle sizes decreased with the increment of copolymers' DS. The holes were not found in SPEEKS‐4/HPA30 (consisting of 70% SPEEKS copolymers with DS = 0.8 and 30% HPA) composite membrane after composite membranes were treated with boiling water for 24 h. Thermal stabilities of the composite membranes were better than those of pure sulfonated copolymers membranes. Although the composite membranes possessed lower water uptake, it exhibited higher proton conductivity for SPEEKS‐4/HPA30 especially at high temperature (above 100 °C). Its proton conductivity linearly increased from 0.068 S/cm at 25 °C to 0.095 S/cm at 120 °C, which was higher than 0.06 S/cm of Nafion 117. In contrast, proton conductivity of pure SPEEKS‐4 membrane only increased from 0.062 S/cm at 25 °C to 0.078 S/cm at 80 °C. At 120 °C, proton conductivity decreased to poor 0.073 S/cm. The result indicated that composite membranes exhibited high proton conductivity at high temperature. © 2006 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 44: 1967–1978, 2006 相似文献
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荧光光度法直接测定高纯氧化钕中的痕量镨和铈 总被引:2,自引:0,他引:2
李义久 《理化检验(化学分册)》1998,34(5):198-199,201
使用P-ELS50荧光光谱仪,在盐酸介质中,用同一激发波长激发,分别测定Pr(Ⅲ)(nm)和Ce(Ⅲ)(356nm)发射峰强度。 相似文献
34.
本文介绍了面向矿山特种结构工程的一个专家系统,并论述了程序设计的原理、系统的功能,以及与AUTOCAD软件包的接口。 相似文献
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使用高纯同位素物质精确配制同位素混合物,作为标准物,确定质谱仪器的系统误差。本工作用天然丰度水定量稀释高浓重氧水,制取从0.1982至96.92原子%~(18)O的氧同位素标准水样,用来校准质谱仪器。 实验采用BrF_5将水样转化成O_2。用质谱峰高法测定(18)~O和(17)~O丰度。比较质谱测定值和计算得到的丰度值C,求出质谱仪固有偏差校正系数K、并得到K与C的线性相关关系。 共得到16个具有准确丰度值的氧同位素标准水样。 相似文献
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倪绍祥 《南京大学学报(自然科学版)》1992,(3)
晋陕蒙交界地带的披砂岩丘陵区是黄游中游河道粗泥沙的主要来源区之一。侵蚀十分严重,已导致沟谷面积迅速扩大,土层加速变薄及土壤中有机质和养分大量流失。强烈侵蚀的原因,一是历时短强度大的暴雨;二是水分入渗能力差.导致地表径流增大的披砂岩岩性特性;三是包括滥樵、乱垦和过牧的人类活动的影响。为了有效地防治披吵岩丘陵区的严重侵蚀,首先应以生物措施为主,工程措施为辅大力做好坡地的治理;其次,生物措施与工程措施并重,认真治理沟道;第三,必须制止乱垦,采用合理的耕作系统;第四,以草定畜,制止过牧。 相似文献
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