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High-performance aromatic polyamides

机译:高性能芳族聚酰胺

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Wholly aromatic polyamides (aramids) are considered to be high-performance organic materials due to their outstanding thermal and mechanical resistance. Their properties arise from their aromatic structure and amide linkages, which result in stiff rod-like macromolec-ular chains that interact with each other via strong and highly directional hydrogen bonds. These bonds create effective crystalline microdomains, resulting in a high-level intermolec-ular packing and cohesive energy. The better known commercial aramids, poly(p-phenylene terephthalamide) and poly(m-phenylene isophthalamide), are used in advanced technologies and have been transformed into high-strength and flame resistant fibers and coatings, with applications in the aerospace and armament industry, bullet-proof body armor, protective clothing, sport fabrics, electrical insulation, asbestos substitutes, and industrial filters, among others. Owing to their chemical structure, they exhibit extremely high transition temperatures that lie above their decomposition temperatures, are sparingly soluble in common organic solvents and, accordingly, can only be transformed upon solution. Research efforts are therefore underway to take advantage of their properties, enhance their processability and solubility, and incorporate new chemical functionalities in the polyamide backbone or lateral structure, so that their applicability is expanded and remains on the forefront of scientific research.
机译:全芳族聚酰胺(芳族聚酰胺)由于其出色的耐热性和机械强度而被认为是高性能有机材料。它们的特性来自于它们的芳香结构和酰胺键,这些键导致刚性的棒状大分子链通过强力和高度定向的氢键相互作用。这些键产生有效的晶体微区,从而导致高水平的分子间堆积和内聚能。较著名的商业芳族聚酰胺,聚对苯二甲酰对苯二甲酰胺和聚间苯二甲酰间苯二甲酰胺,已被用于先进技术,并已转变为高强度和阻燃性的纤维和涂料,并在航空航天和军械工业中得到应用,防弹防弹衣,防护服,运动面料,电绝缘,石棉替代品和工业过滤器等。由于它们的化学结构,它们显示出高于其分解温度的极高的转变温度,几乎不溶于常见的有机溶剂,因此只能在溶液中转化。因此,正在进行研究努力以利用它们的特性,增强它们的可加工性和溶解性,并将新的化学官能团结合到聚酰胺主链或侧向结构中,从而扩大了它们的适用性,并一直处于科学研究的前沿。

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