胺化碳纤维的电磁微波吸收性能

L. Grishchenko, V. A. Moiseienko, V. Malyshev, I. Matushko, V. Kuryliuk, A. Vakaliuk, O. Mischanchuk, O. Boldyrieva, Vladyslav V. Lisnyak, V. Diyuk
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摘要

本文报道了溴化聚丙烯腈碳纤维(PAN CFs)的胺化对X波段和ka波段电磁辐射吸收效率的影响。先用溴溶液溴化,再用乙二胺(En)、磺酰乙二胺(SuEn)、二乙胺(Et2N)、单乙醇胺(MEA)和哌嗪(Py)进行胺化。胺化反应导致附着的溴基团被氨基取代。采用热重分析(TGA)和质谱分析(TPD MS)对制备的聚丙烯腈碳纤维的热解吸性能进行了研究。氨基分解产物从PAN碳纤维表面的热解吸范围为140 ~ 415℃,根据修饰胺和氨基表面浓度的不同,最高解吸温度为240 ~ 258℃。对于x波段,所使用的胺的类型并不重要,电磁辐射的吸收值不超过−18 dB。在Ka范围内,经Py、En和SuEn改性的溴化PAN碳纳米管的电磁辐射分别降低了- 19 dB、- 23 dB和- 28 dB左右。综上所述,用胺修饰的溴化聚苯乙烯碳氟化合物很有可能用作保护材料,以防止电磁辐射在ka波段频率范围内对生物组织的有害影响。通过选择胺类改性剂,可以在形成表面保护吸收层时调节吸收强度。
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Electromagnetic Microwave Absorption Performances of Aminated Carbon Fibers
Here we reported the effect of the amination of the brominated polyacrylonitrile carbon fibers (PAN CFs) on the efficiency of absorption of electromagnetic radiation studied for the X- and Ka-bands. The fiber modification was carried out by bromination with bromine liquid followed by amination with one of the amines: ethylenediamine (En), sulfolanylethylenediamine (SuEn), diethylamine (Et2N), monoethanolamine (MEA), and piperazine (Py). The amination caused the replacement of attached bromine groups with amino groups. The thermal desorption properties of the prepared PAN CFs were investigated using TGA and TPD MS methods. Thermal desorption of the products of amino groups decomposition from the surface of PAN CFs ranges from 140 to 415 °C with maxima at 240–258 °C depending on the modifying amine and the surface concentration of the amino groups. For the X-band, the type of amine used is not of significant importance, and the value of the absorption for electromagnetic radiation does not exceed −18 dB. In the Ka range, the brominated PAN CFs modified with Py, En, and SuEn reduce the electromagnetic radiation by about −19 dB, −23 dB, and −28 dB, correspondingly. From all the above, it is clear that the brominated PAN CFs modified with amines have a perspective for use as a protective material against the harmful effects of electromagnetic radiation on biological tissues in the Ka-band frequency range. By choice of amine modifier, the absorption magnitude can be regulated when forming a surface protective-and-absorptive layer.
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