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首页> 外文期刊>Frontiers in Chemistry >Fluorescent Supramolecular Polymers Formed by Crown Ether-Based Host-Guest Interaction
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Fluorescent Supramolecular Polymers Formed by Crown Ether-Based Host-Guest Interaction

机译:通过基于冠状醚的宿主互动形成的荧光超分子聚合物

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Inspired by the vary array of assemblies present in nature, supramolecular chemistry has attracted significant attention on account of its diverse supra-structures, which include micelles, vesicles and fibers, in addition to its extensive applications in luminescent materials, sensors, bioimaging, and drug delivery over the past decades. Supramolecular polymers, which are a combination of supramolecular chemistry and polymer science, are constructed by non-covalent interactions, such as host-guest interactions, hydrogen bonding, hydrophobic or hydrophilic interactions, metal-ligand interactions, π-π stacking, and electrostatic interactions. To date, numerous host-guest recognition systems have been reported, including crown ethers, cyclodextrins, calixarenes, gourd ureas, column aromatics, and other macrocyclic systems. Among them, crown ethers, as the first generation of macrocyclic systems, provide a promising and facile alternative route to supramolecular polymers. In addition, the incorporation of fluorophores into supramolecular polymers could endow them with multiple properties and functions, thereby presenting potential advantages in the context of smart materials. Thus, this review focuses on the fabrication strategies, interesting properties, and potential applications of fluorescent supramolecular polymers based on crown ethers. Typical examples are presented and discussed in terms of three different types of building blocks, namely covalently bonded low-molecular-weight compounds, polymers modified by hosts or guests, and supramolecular coordination complexes.
机译:由本质上存在的各种组件的激励,超分子化学由于其不同的次要结构而引起了重大关注,其包括胶束,囊泡和纤维,除了其发光材料,传感器,生物成像和药物的广泛应用在过去的几十年中交付。作为超分子化学和聚合物科学的组合的超分子聚合物由非共价相互作用构成,例如宿主 - 客体相互作用,氢键,疏水或亲水相互作用,金属 - 配体相互作用,π-π堆叠和静电相互作用。迄今为止,报告了众多宿主访客识别系统,包括皇冠醚,环糊精,钙屈剂,葫芦脲,柱芳烃和其他宏型系统。其中,作为第一代宏环系统,冠醚提供了前分子聚合物的有希望和容易的替代途径。此外,将荧光团的掺入超分子聚合物可以赋予它们多种性能和功能,从而在智能材料的背景下呈现潜在的优势。因此,本综述侧重于基于冠醚的荧光超分子聚合物的制造策略,有趣的性质和潜在应用。典型的实施例提出和讨论了三种不同类型的构建块,即共价键合的低分子量化合物,由宿主或客人改性的聚合物,以及超分子配合复合物。

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