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Multifunctional Polymer-Free Mineral Plastic Adhesives Formed by Multiple Noncovalent Bonds

机译:通过多种非共价键形成的多官能聚合物无矿物塑料粘合剂

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摘要

Supramolecular adhesives have attracted a great deal of attention in recent years, resulting in their development for different applications. However, creating supramolecular adhesives with reversible and reusable properties is still a challenge. Here, a synthesis route to obtain supramolecular adhesives is presented in which no polymeric compounds are involved in the preparation. The adhesive is formed by intermolecular coulomb forces between amorphous magnesium carbonate nanoparticles and the low-molecular-weight drug ibuprofen, which results in an amorphous composite material that is transparent, shapeable, stretchable, and self-healing, making it reusable. It is demonstrated that this hybrid material provides a simple means of gluing a wide variety of materials, including metals, glass, paper, and plastics, and that is reversible and possesses reusability. The material disrupts the traditional concept of polymer-based adhesives and may be used as a sustainable mineral plastic in applications such as 3D printing.
机译:近年来,超分子粘合剂引起了大量关注,导致他们对不同应用的发展。然而,通过可逆和可重复使用的性质创建超分子粘合剂仍然是一个挑战。这里,提出了获得超分子粘合剂的合成途径,其中不参与制剂中的聚合物化合物。粘合剂通过非晶态碳酸镁纳米粒子和低分子量药物布洛芬之间的分子间库仑力形成,这导致无定形的复合材料,可透明,可塑性,可伸缩和自愈,使其可重复使用。结果表明,这种混合材料提供了一种胶合各种材料的简单手段,包括金属,玻璃,纸和塑料,这是可逆的并且具有可重用性。该材料破坏了聚合物基粘合剂的传统概念,并且可以用作3D印刷等应用中的可持续矿物塑料。

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