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Small Changes with Big Effects: Tuning Polymer Properties with Supramolecular Interactions

机译:小变化带来大影响:通过超分子相互作用调节聚合物性能

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For biological polymers like DNA and proteins, supramolecular interactions dictate the folding and assembly of the polymer chains. Advances in synthetic polymer chemistry enable the synthesis of polymers of defined length and composition, but the field has yet to reach the same level of sophistication as nature's polymers. However, the incorporation of just a few supramolecular interactions into a synthetic polymer chain can drastically change the manner in which the polymer assembles and interacts, thereby altering the properties of a polymeric material. This highlight will focus on approaches wherein a low-density of supramolecular functionalities (<10 wt %) were used per polymer chain. How the selection of the appropriate supramolecular functionality (based on the directionality and strength of the interaction), along with the location of these groups on a polymer chain, can afford a spectrum of material properties has been highlighted. At one end, the supramolecular motif can dramatically alter the elasticity of a material, and at the other, the motif can have a more subtle effect like increasing the stability of a micelle. (C) 2015 Wiley Periodicals, Inc.
机译:对于诸如DNA和蛋白质之类的生物聚合物,超分子相互作用决定了聚合物链的折叠和组装。合成聚合物化学的进步使得能够合成具有确定长度和组成的聚合物,但是该领域的复杂程度尚未达到与自然界聚合物相同的水平。然而,仅将少数超分子相互作用掺入到合成聚合物链中可极大地改变聚合物组装和相互作用的方式,从而改变聚合物材料的性质。该重点将集中在每个聚合物链使用低密度超分子官能度(<10 wt%)的方法上。突出了如何选择合适的超分子官能度(基于相互作用的方向性和强度)以及这些基团在聚合物链上的位置如何能够提供一系列材料特性的方法。一方面,超分子基序可以显着改变材料的弹性,另一方面,基序可以具有更微妙的效果,例如增加胶束的稳定性。 (C)2015年Wiley Periodicals,Inc.

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