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Surface-Cross-Linked Micelles as MultifunctionalizedOrganic Nanoparticles for Controlled Release Light Harvesting andCatalysis

机译:表面交叉连接的胶束具有多功能性有机纳米粒子用于控释光收集和催化

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摘要

Surfactant micelles are dynamic entities with a rapid exchange of monomers. By “clicking” tripropargylammonium-containing surfactants with diazide cross-linkers, we obtained surface-cross-linked micelles (SCMs) that could be multifunctionalized for different applications. They triggered membrane fusion through tunable electrostatic interactions with lipid bilayers. Antenna chromophores could be installed on them to create artificial light-harvesting complexes with efficient energy migration among tens to hundreds of chromophores. When cleavable cross-linkers were used, the SCMs could break apart in response to redox or pH signals, ejecting entrapped contents quickly as a result of built-in electrostatic stress. They served as caged surfactants whose surface activity was turned on by environmental stimuli. They crossed cell membranes readily. Encapsulated fluorophores showed enhanced photophysical properties including improved quantum yields and greatly expanded Stokes shifts. Catalytic groups could be installed on the surface or in the interior, covalently attached or physically entrapped. As enzyme mimics, the SCMs enabled rational engineering of the microenvironment around thecatalysts to afford activity and selectivity not possible with conventionalcatalysts.
机译:表面活性剂胶束是具有快速交换单体的动态实体。通过用“叠氮化物”交联剂“点击”含三炔丙铵的表面活性剂,我们获得了可以针对不同应用进行多功能化的表面交联的胶束(SCM)。他们通过与脂质双层的可调静电相互作用触发了膜融合。可以将天线生色团安装在其上,以创建可在数十到数百个生色团之间进行有效能量迁移的人造光收集络合物。当使用可裂解的交联剂时,SCM会响应氧化还原或pH信号而破裂,由于内置的​​静电应力,会迅速喷射出夹带的内含物。它们用作笼状表面活性剂,其表面活性可通过环境刺激而开启。他们很容易穿过细胞膜。封装的荧光团显示出增强的光物理性质,包括提高的量子产率和大大扩展的斯托克斯位移。催化基团可以共价连接或物理包裹在表面或内部。作为酶的模拟物,SCM使合理设计周围的微环境成为可能。催化剂提供活性和选择性,这是常规方法无法实现的催化剂。

著录项

  • 期刊名称 ACS AuthorChoice
  • 作者

    Yan Zhao; *;

  • 作者单位
  • 年(卷),期 -1(32),23
  • 年度 -1
  • 页码 5703–5713
  • 总页数 11
  • 原文格式 PDF
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