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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Investigation of hydrophobic interactions mediating the self-assembly of supramolecular host/guest polymer complexes utilizing Simultaneous Multiple Sample Light Scattering (SMSLS)
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APS -APS March Meeting 2017 - Event - Investigation of hydrophobic interactions mediating the self-assembly of supramolecular host/guest polymer complexes utilizing Simultaneous Multiple Sample Light Scattering (SMSLS)

机译:APS -APS 2017年3月会议-活动-利用同时多样品光散射(SMSLS)研究介导超分子主体/客体聚合物复合物自组装的疏水性相互作用

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摘要

While living systems spontaneously heal injuries, most man made materials cannot recover from damage. Incorporating self-healing properties into synthetic polymers could significantly extend product lifetime, safety, and applications. Most reported approaches to incorporate healing into synthetic materials, however, require external stimuli such as chemical additives, heat, and light exposure. Although dynamic bonds have been explored, particularly using a hydrogen bond motif, this has not been fully investigated in an aqueous environment. To address this, hosts and guests that dynamically associate in water have been investigated to build aqueous self-healing materials. These association values were probed for various host/guest complexes using Simultaneous Multiple Sample Light Scattering (SMSLS), a technique that measures the size of aggregates via light scattering while varying concentration and other environmental factors.
机译:生命系统自发地治愈伤口时,大多数人造材料无法从损坏中恢复。将自我修复特性纳入合成聚合物可以显着延长产品寿命,安全性和应用范围。然而,大多数报道的将愈合结合到合成材料中的方法都需要外部刺激,例如化学添加剂,热量和光照。尽管已经研究了动态键,特别是使用氢键基序,但在水性环境中尚未对此进行充分研究。为了解决这个问题,已经研究了在水中动态缔合的宿主和客体来构建水性自愈材料。使用同时多次样品光散射(SMSLS)探测了各种缔合体/客体复合物的这些缔合值,该技术可通过光散射同时改变浓度和其他环境因素来测量聚集体的大小。

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