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Preparation and Characterization of Electrospun Fluoro-Containing Poly(imide-benzoxazole) Nano-Fibrous Membranes with Low Dielectric Constants and High Thermal Stability

机译:低介电常数和高热稳定性的含电纺氟代聚(酰亚胺 - 苯并恶唑)纳米纤维膜的制备及表征

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摘要

The rapid development of advanced high-frequency mobile communication techniques has advanced urgent requirements for polymer materials with high-temperature resistance and good dielectric properties, including low dielectric constants (low-Dk) and low dielectric dissipation factors (low-Df). The relatively poor dielectric properties of common polymer candidates, such as standard polyimides (PIs) greatly limited their application in high-frequency areas. In the current work, benzoxazole units were successfully incorporated into the molecular structures of the fluoro-containing PIs to afford the poly(imide-benzoxazole) (PIBO) nano-fibrous membranes (NFMs) via electrospinning fabrication. First, the PI NFMs were prepared by the electrospinning procedure from organo-soluble PI resins derived from 2,2′-bis(3,4-dicarboxy-phenyl)hexafluoropropane dianhydride (6FDA) and aromatic diamines containing ortho-hydroxy-substituted benzamide units, including 2,2-bis[3-(4-aminobenzamide)-4-hydroxylphenyl]hexafluoropropane (p6FAHP) and 2,2-bis[3-(3-aminobenzamide)-4-hydroxyphenyl]hexafluoropropane (m6FAHP). Then, the PI NFMs were thermally dehydrated at 350 °C in nitrogen to afford the PIBO NFMs. The average fiber diameters (dav) for the PIBO NFMs were 1225 nm for PIBO-1 derived from PI-1 (6FDA-p6FAHP) precursor and 816 nm for PIBO-2 derived from PI-2 (6FDA-m6FAHP). The derived PIBO NFMs showed good thermal stability with the glass transition temperatures (Tgs) over 310 °C and the 5% weight loss temperatures (T5%) higher than 500 °C in nitrogen. The PIBO NFMs showed low dielectric features with the Dk value of 1.64 for PIBO-1 and 1.82 for PIBO-2 at the frequency of 1 MHz, respectively. The Df values were in the range of 0.010~0.018 for the PIBO NFMs.
机译:高级高频移动通信技术的快速发展具有高耐温性和良好介电性能的高分子材料的迫切要求,包括低介电常数(低DK)和低介电耗散因子(低DF)。普通聚合物候选物(例如标准聚酰亚胺(PIS)的相对较差的介电性质极大地限于它们在高频区域中的应用。在当前的工作中,苯并恶唑单元被成功地掺入含氟PI的分子结构中,得到聚(酰亚胺 - 苯并恶唑)(Pibo)纳米纤维膜(NFMS)通过静电纺丝制造。首先,通过衍生自2,2'-BIS(3,4-二羧基 - 苯基)六氟丙烷二酐(6FDA)和含有邻羟基取代的苯甲酰胺单位的芳族二胺来制备PI NFMS的静电纺丝程序制备,包括2,2-双[3-(4-氨基苯甲酰胺)-4-羟基苯基]六氟丙烷(P6FAHP)和2,2-双[3-(3-氨基苯甲酰胺)-4-羟基苯基]六氟丙烷(M6FAHP)。然后,在350℃的氮中在350℃下热脱水,得到Pibo NFMS。 Pibo NFMS的平均纤维直径(DAV)为来自PI-1(6FDA-P6FAHP)前体的PIBO-1的1225nm,PIBO-2的816nm用于衍生自PI-2(6FDA-M6FAHP)。衍生的PIBO NFMS显示出良好的热稳定性,玻璃化转变温度(TGS)超过310℃,5%重量损失温度(T5%)高于500℃的氮。 PIBO NFMS分别显示出低介电特征,其DK值为1.64,PIBO-1和1.82分别以1MHz的频率为PIBO-2。 PIBO NFMS的DF值在0.010〜0.018的范围内。

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