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Silver nanoparticles cross-linked polyimide aerogels with improved high temperature microstructure stabilities and high mechanical performances

机译:银纳米粒子交联聚酰亚胺气凝胶,具有改善的高温微观结构稳定性和高机械性能

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Nanoparticles can be considered as effective cross-linkers for PI aerogels. In order to investigate the effect of different nanoparticle-cross-linkers on the performances of aerogels, two types of silver nanoparticles, AgNPs (Ag nanoparticles) and AgNShs (Ag nanosheets) were modified via PAW (p-aminothiophenol) as cross-linkers and then added into PAA (polyamic acid) solution derived from BPDA (3, 3', 4, 4'-biphenyltetracarboxylic dianhydride) and ODA (4, 4'-diaminodiphenyl ether) to form wet gel. The wet gel was processed with supercritical CO2 drying to fabricate cross-linked polyimide aerogels. Raman, XPS and TG-IR were carried out to prove successful modification of silver nanoparticles. The as-prepared aerogels had densities around 0.2 g cm(-3). Nitrogen adsorption desorption tests and mechanical tests were conducted to characterize the performance of aerogels at room temperature and high temperature (above 150 degrees C). The results showed that comparing to pure PI aerogels, aerogels cross-linked with silver nanoparticles had higher compressive strength and Young's modulus, which comes to 3.4 MPa and 52.7 MPa, respectively. Besides, silver nanoparticles cross-linked aerogels also had better high temperature stability in both size and microstructure comparing to pure PI aerogels. With remarkable mechanical properties and high temperature microstructure stabilities, these aerogels show potential in many areas of application.
机译:纳米颗粒可以被认为是PI Aerogels的有效交联剂。为了探讨不同纳米颗粒 - 交联剂对气凝胶性能的影响,通过爪(P-氨基酚苯酚)作为交联剂改性两种类型的银纳米颗粒,AgNP(Ag纳米粒子)和AgNSHs(Ag NanosheCers)和然后加入衍生自BPDA(3,3',4,4'-联苯基二羧酸二酐)和ODA(4,4'-二氨基二苯基醚)的Paa(聚酰胺酸)溶液中以形成湿凝胶。用超临界CO 2干燥处理湿凝胶,制备交联的聚酰亚胺气凝胶。进行拉曼,XPS和TG-IR,以证明是对银纳米颗粒的成功改性。制备的Aerogels的密度约为0.2g cm(-3)。进行氮吸附解吸试验和机械试验,以表征在室温和高温下的气凝胶(高于150℃)。结果表明,与纯PI气凝胶相比,与银纳米颗粒交联的气凝胶具有更高的抗压强度和杨氏模量,分别达到3.4MPa和52.7MPa。此外,银纳米粒子交联气凝胶还具有更好的高温稳定性,尺寸和微结构与纯PI气凝胶相比。具有显着的机械性能和高温微观结构稳定性,这些气凝胶显示出许多应用领域的潜力。

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