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Creation of Superhydrophobic Poly(L-phenylalanine) Nonwovens by Electrospinning

机译:静电纺丝制备超疏水聚(L-苯丙氨酸)非织造布

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摘要

From the viewpoint of green chemistry and environmental chemistry, an important challenge in the field of superhydrophobic materials is to create them with only bio-based molecules. We developed superhydrophobic and chemically stable poly(L-phenylalanine) (PolyPhe) nonwovens by electrospinning. PolyPhe was selected because, due to its very rigid chemical structure, it is one of the toughest and most hydrophobic polymers among polymers composed only of amino acids. The water contact angle on the nonwovens is a maximum of 160°, and the droplets are stably adhered and remain still on the nonwoven surface even if it is turned over, thereby suggesting a petal-type superhydrophobicity. The nonwovens show a good chemical stability, and their weight remains unchanged after 5 days immersion in acidic (pH 2) and basic (pH 12) conditions. In addition, the superhydrophobic property is not lost even after the alkali treatment. Such tough superhydrophobic materials are intriguing for further biomedical and environmental applications.
机译:从绿色化学和环境化学的观点来看,超疏水材料领域的一个重要挑战是仅用生物基分子来制造它们。我们通过静电纺丝开发了超疏水且化学稳定的聚(L-苯丙氨酸)(PolyPhe)无纺布。选择PolyPhe的原因是,由于其非常坚硬的化学结构,它是仅由氨基酸组成的聚合物中最坚韧,最疏水的聚合物之一。非织造材料上的水接触角最大为160°,并且即使将其翻转,液滴也稳定地附着并且仍保持在非织造材料表面上,从而表现出花瓣型的超疏水性。非织造布显示出良好的化学稳定性,并且在酸性(pH 2)和碱性(pH 12)条件下浸泡5天后其重量保持不变。另外,即使在碱处理之后也不会丧失超疏水性。这种坚韧的超疏水材料对于进一步的生物医学和环境应用很有吸引力。

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