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由良性溶剂制备的高模量、支柱状聚醚醚酮气凝胶

High Modulus, Strut-like poly(ether ether ketone) Aerogels Produced from a Benign Solvent.

作者信息

Spiering Glenn A, Godshall Garrett F, Moore Robert B

机构信息

Department of Chemistry, Macromolecules Innovation Institute, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

Gels. 2024 Apr 22;10(4):283. doi: 10.3390/gels10040283.

Abstract

Poly(ether ether ketone) (PEEK) was found to form gels in the benign solvent 1,3-diphenylacetone (DPA). Gelation of PEEK in DPA was found to form an interconnected, strut-like morphology composed of polymer axialites. To our knowledge, this is the first report of a strut-like morphology for PEEK aerogels. PEEK/DPA gels were prepared by first dissolving PEEK in DPA at 320 °C. Upon cooling to 50 °C, PEEK crystallizes and forms a gel in DPA. The PEEK/DPA phase diagram indicated that phase separation occurs by solid-liquid phase separation, implying that DPA is a good solvent for PEEK. The Flory-Huggins interaction parameter, calculated as = 0.093 for the PEEK/DPA system, confirmed that DPA is a good solvent for PEEK. PEEK aerogels were prepared by solvent exchanging DPA to water then freeze-drying. PEEK aerogels were found to have densities between 0.09 and 0.25 g/cm, porosities between 80 and 93%, and surface areas between 200 and 225 m/g, depending on the initial gel concentration. Using nitrogen adsorption analyses, PEEK aerogels were found to be mesoporous adsorbents, with mesopore sizes of about 8 nm, which formed between stacks of platelike crystalline lamellae. Scanning electron microscopy and X-ray scattering were utilized to elucidate the hierarchical structure of the PEEK aerogels. Morphological analysis found that the PEEK/DPA gels were composed of a highly nucleated network of PEEK axialites (i.e., aggregates of stacked crystalline lamellae). The highly connected axialite network imparted robust mechanical properties on PEEK aerogels, which were found to densify less upon freeze-drying than globular PEEK aerogel counterparts gelled from dichloroacetic acid (DCA) or 4-chlorphenol (4CP). PEEK aerogels formed from DPA were also found to have a modulus-density scaling that was far more efficient in supporting loads than the poorly connected aerogels formed from PEEK/DCA or PEEK/4CP solutions. The strut-like morphology in these new PEEK aerogels also significantly improved the modulus to a degree that is comparable to high-performance crosslinked aerogels based on polyimide and polyurea of comparable densities.

摘要

聚醚醚酮(PEEK)被发现在良性溶剂1,3 - 二苯基丙酮(DPA)中形成凝胶。PEEK在DPA中的凝胶化过程形成了一种由聚合物轴状体组成的相互连接的、支柱状形态。据我们所知,这是关于PEEK气凝胶支柱状形态的首次报道。PEEK/DPA凝胶是通过先将PEEK在320°C下溶解于DPA中制备而成。冷却至50°C时,PEEK结晶并在DPA中形成凝胶。PEEK/DPA相图表明相分离通过固 - 液相分离发生,这意味着DPA是PEEK的良溶剂。计算得出的PEEK/DPA体系的弗洛里 - 哈金斯相互作用参数为 = 0.093,证实了DPA是PEEK的良溶剂。PEEK气凝胶通过将DPA溶剂交换为水然后冻干来制备。根据初始凝胶浓度的不同,发现PEEK气凝胶的密度在0.09至0.25 g/cm之间,孔隙率在80%至93%之间,表面积在200至225 m²/g之间。通过氮气吸附分析发现,PEEK气凝胶是介孔吸附剂,介孔尺寸约为8 nm,形成于板状结晶薄片堆叠之间。利用扫描电子显微镜和X射线散射来阐明PEEK气凝胶的分级结构。形态分析发现,PEEK/DPA凝胶由高度成核的PEEK轴状体网络(即堆叠结晶薄片的聚集体)组成。高度连接的轴状体网络赋予了PEEK气凝胶强大的机械性能,与由二氯乙酸(DCA)或4 - 氯苯酚(4CP)凝胶化得到的球状PEEK气凝胶相比,冻干后其致密化程度更低。由DPA形成的PEEK气凝胶还具有模量 - 密度标度,在支撑负载方面比由PEEK/DCA或PEEK/4CP溶液形成的连接性差的气凝胶效率高得多。这些新型PEEK气凝胶中的支柱状形态也显著提高了模量,达到了与基于聚酰亚胺和聚脲且密度相当的高性能交联气凝胶相当的程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/760e/11049303/2ead9b3721c7/gels-10-00283-g001.jpg

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