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Physically Crosslinked Acrylics with Enhanced Mechanical Strength and Processability: From DNA to Supramolecular Pressure Sensitive Adhesives

机译:物理交联的丙烯酸烯,具有增强的机械强度和加工性:从DNA到超分子压敏粘合剂

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Supramolecular polymers are emerging as functional materials for many applications due to their unique reversibility and thermoresponsiveness.' There are two main types of supramolecular polymers: supramolecular polymers comprise of monomer units associated via noncova-lent interactions; or chemically linked polymer backbone bearing pendent groups that physical crosslink both inter-and intra-molecularly. The second type shows more potential in commercial application development, as it combines the benefit of traditional polymer synthesis and the unique reversibility from physical crosslinks. Noncovalent interactions, such as hydrogen bonding and pi-stacking, create supramolecular physical crosslinked network and significantly influence polymer properties. For adhesive materials, noncovalent interactions improve cohesive strength,2'3 enhance temperature dependence of melt viscosity,4 and drive self-assembly of phase separated morphology.5 Instead of covalently-crosslinked thermoset like epoxy, these supramolecular polymer networks regain their processibility when noncovalent interactions dissociate upon external stimuli, such as heat, pH, solvent, and salt (Figure 1). As a result, supramolecular adhesives have advantages over conventional adhesives on both mechanical performance and processibility.
机译:由于其独特的可逆性和热反应性,超分子聚合物作为许多应用的功能材料被出现为功能材料。存在两种主要类型的超分子聚合物:超分子聚合物包含通过非透明酰基相互作用相关的单体单元;或化学连接的聚合物骨架轴承轴承骨折,其分子间和分子间的物理交联。第二种类型在商业应用开发中显示出更多潜力,因为它结合了传统聚合物合成的益处和来自物理交联的独特可逆性。非共价相互作用,例如氢键和PI堆叠,产生超分子物理交联网络并显着影响聚合物性质。对于粘合材料,非共价相互作用改善内聚强度,2'3增强熔体粘度的温度依赖性,4和驱动相分离形态的自组装.5代替共价交联的热固性,如环氧树脂,这些超分子聚合物网络在非共价时重新获得它们的加工性相互作用在外部刺激后解离,例如热,pH,溶剂和盐(图1)。结果,超分子粘合剂具有关于机械性能和加工性的常规粘合剂的优点。

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