Smith David K
Department of Chemistry, University of York, Heslington, York, UKYO10 5DD.
Chem Commun (Camb). 2006 Jan 7(1):34-44. doi: 10.1039/b507416a. Epub 2005 Sep 1.
Dendritic molecules constitute one of the most exciting areas of modern nanochemistry, largely as a consequence of the unique properties associated with their branched architectures. This article describes how 'dendritic function' can also be achieved using small, synthetically accessible branched building blocks (individual dendrons) which simply self-assemble via non-covalent interactions to generate dendritic nanoscale architectures with novel behaviour. (a) Using non-covalent interactions at the focal point of a dendron allows the self-assembly of nanometre-sized supramolecular dendrimers around an appropriate template species. Such systems have potential applications in the controlled encapsulation and release of active ingredients. (b) Employing non-covalent intermolecular dendron-dendron interactions can give rise to the hierarchical assembly of nanostructured materials. Such assemblies of dendritic molecules ultimately express their molecular scale information on a macroscopic scale, and therefore have applications in materials science, for example as gels. (c) The multiple surface groups of dendrons are capable of forming multiple interactions with large surfaces, such as those found on biomolecules or in biological systems. Employing multivalent interactions between dendron surfaces and biological molecules opens up the potential application of dendritic systems as medicinal therapies. In summary, dendritic supermolecules offer a potentially cost-effective approach to the future application of dendritic systems to a range of real-world problems.
树枝状分子构成了现代纳米化学中最令人兴奋的领域之一,这很大程度上是由于与其分支结构相关的独特性质。本文描述了如何使用小型的、可通过合成获得的分支构建单元(单个树枝状分子)来实现“树枝状功能”,这些构建单元通过非共价相互作用简单地自组装,以生成具有新颖行为的树枝状纳米级结构。(a) 在树枝状分子的焦点处利用非共价相互作用,可以使纳米级超分子树枝状聚合物围绕合适的模板物种进行自组装。这类体系在活性成分的可控包封和释放方面具有潜在应用。(b) 利用树枝状分子间的非共价分子间相互作用能够引发纳米结构材料的分级组装。树枝状分子的这类组装最终在宏观尺度上表达其分子尺度信息,因此在材料科学中有应用,例如作为凝胶。(c) 树枝状分子的多个表面基团能够与大表面形成多种相互作用,比如在生物分子或生物系统中发现的那些表面。利用树枝状分子表面与生物分子之间的多价相互作用开启了树枝状体系作为药物疗法的潜在应用。总之,树枝状超分子为树枝状体系未来应用于一系列实际问题提供了一种潜在的经济有效方法。