...
首页> 外文期刊>Materials Chemistry Frontiers >Water-induced self-assembly of an amphiphilic perylene bisimide dyad into vesicles, fibers, coils, and rings
【24h】

Water-induced self-assembly of an amphiphilic perylene bisimide dyad into vesicles, fibers, coils, and rings

机译:Water-induced两性分子的自组装二萘嵌苯bisimide双囊泡,纤维,线圈,和戒指

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Control over the self-assembly pathways of small functional molecules is a current trend in supramolecular chemistry, as a variety of metastable self-assemblies with nanostructures distinct from those of thermo- dynamically stable assemblies can be formed as kinetic products. If such kinetically formed assemblies can be trapped under non-equilibrium conditions, diverse self-organized structures beyond the immediate molecular design may be accessible. The self-assembly of specifically designed amphiphilic p-conjugated molecules in water represents a promising strategy to realize such conditions, wherein strong hydrophobic molecular interactions play an important role. Based on the alkyl-tethered covalent perylene bisimide (PBI) dyad scaffold that can potentially aggregate into one-dimensional supramolecular polymers, herein we demonstrate that an amphiphilic molecular design can open up new self-assembly pathways, which can potentially afford distinct nanostructures in aqueous media. We synthesized amphiphilic PBI dyads that contain one PBI unit functionalized with hydrophobic branched alkyl chains, and one PBI unit functionalized with hydrophilic branched alkyl chains. By changing the composition ratio of the THF/water mixtures, we obtained one-dimensional fibrous and vesicular aggregates as a result of increasing hydrophobic effects. Increasing the temperature of the THF/water mixtures in which fibrous aggregates are preferentially formed subdued the aggregation to entropy control and resulted in the formation of coil- and ring-shaped kinetic nanoaggregates.
机译:控制小的自组装途径功能分子是一个当前的趋势超分子化学,是各种各样的亚稳态与纳米结构自组装明显的热——动态稳定程序集可以形成动力产品。这样的活动形成组件可以被困在非平衡条件下,多样化除了迫在眉睫的自组织结构分子设计可能会访问。自组装的特别设计两亲性p-conjugated分子在水里代表一个有前途的战略来实现条件下,在强大的疏水分子互动发挥着重要的作用。苝醌类化合物alkyl-tethered共价bisimide (PBI)双支架,可以聚合成一维超分子聚合物,我们证明一个两亲性分子设计可以打开新的自组装途径,可以承受不同的在媒体水性纳米结构。两亲性PBI二分体,包含一个PBI单位携带疏水支链烷基链,一个PBI单位携带亲水支链烷基链。四氢呋喃/水混合物的成分比例,我们获得一维纤维和水泡骨料的增加疏水效果。四氢呋喃/水混合物中纤维聚合优先形成抑制聚合吗熵控制和形成线圈和环形的动能nanoaggregates。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号