Demski Szymon, Brząkalski Dariusz, Gubernat Maciej, Dydek Kamil, Czaja Paweł, Żochowski Konrad, Kozera Paulina, Krawczyk Zuzanna, Sztorch Bogna, Przekop Robert Edward, Marczak Michał, Ehrlich Hermann, Boczkowska Anna
Faculty of Materials Science and Engineering, Warsaw University of Technology, 141 Wołoska St., 02-507 Warsaw, Poland.
Centre for Advanced Technologies, Adam Mickiewicz University in Poznań, 10 Uniwersytetu Poznańskiego St., 61-614 Poznań, Poland.
Polymers (Basel). 2024 Feb 2;16(3):422. doi: 10.3390/polym16030422.
The main goal of this work was an improvement in the mechanical and electrical properties of acrylic resin-based nanocomposites filled with chemically modified carbon nanotubes. For this purpose, the surface functionalization of multi-walled carbon nanotubes (MWCNTs) was carried out by means of aryl groups grafting via the diazotization reaction with selected aniline derivatives, and then nanocomposites based on ELIUM resin were fabricated. FT-IR analysis confirmed the effectiveness of the carried-out chemical surface modification of MWCNTs as new bands on FT-IR spectra appeared in the measurements. TEM observations showed that carbon nanotube fragmentation did not occur during the modifications. According to the results from Raman spectroscopy, the least defective carbon nanotube structure was obtained for aniline modification. Transmission light microscopy analysis showed that the neat MWCNTs agglomerate strongly, while the proposed modifications improved their dispersion significantly. Viscosity tests confirmed, that as the nanofiller concentration increases, the viscosity of the mixture increases. The mixture with the highest dispersion of nanoparticles exhibited the most viscous behaviour. Finally, an enhancement in impact resistance and electrical conductivity was obtained for nanocomposites containing modified MWCNTs.
这项工作的主要目标是改善填充有化学改性碳纳米管的丙烯酸树脂基纳米复合材料的机械和电学性能。为此,通过与选定的苯胺衍生物进行重氮化反应接枝芳基,对多壁碳纳米管(MWCNT)进行表面功能化,然后制备基于ELIUM树脂的纳米复合材料。傅里叶变换红外光谱(FT-IR)分析证实了对MWCNT进行的化学表面改性是有效的,因为在测量中FT-IR光谱上出现了新的谱带。透射电子显微镜(TEM)观察表明,改性过程中未发生碳纳米管断裂。根据拉曼光谱的结果,苯胺改性得到的碳纳米管结构缺陷最少。透射光显微镜分析表明,纯MWCNT强烈团聚,而所提出的改性显著改善了它们在其中的分散性。粘度测试证实,随着纳米填料浓度的增加,混合物的粘度增加。纳米颗粒分散性最高的混合物表现出最粘的行为。最后,含有改性MWCNT的纳米复合材料的抗冲击性和导电性得到了提高。