Balderston Dominick E, Feo Elba, Leonescu Anamaria, Stevens Mackenzie, Wilmshurst Alexander M, Gale Philip A, Haynes Cally J E, Williams George T, Hiscock Jennifer R
University of Kent, Canterbury CT2 7NH, UK.
School of Physical and Mathematical Sciences, Faculty of Science, University of Technology Sydney, Ultimo 2007, NSW, Australia.
Chem Soc Rev. 2025 Sep 4. doi: 10.1039/d4cs01037j.
Supramolecular chemistry is a rapidly evolving field that has focused on building a foundation of fundamental understanding in controlling molecular self-assembly, through the use of non-covalent interactions. A common criticism of the field is that whilst the systems produced are very elegant, they do not have real-world use. Therefore, focus is now moving to applying the fundamental understanding of supramolecular chemistry to the production of commercially viable products. Building on our previous review in this area, which described the translational potential of innovations within the field of supramolecular chemistry up to the year 2020, we now review the progress of this field over the years 2021-2025 with the aim to inspire researchers to apply supramolecular chemistry to solve real world problems, moving innovation out of the laboratory and into the commercial marketplace.
超分子化学是一个快速发展的领域,它专注于通过使用非共价相互作用来建立控制分子自组装的基本理解基础。该领域常见的一种批评是,虽然所产生的体系非常精巧,但它们没有实际用途。因此,现在的重点正转向将超分子化学的基本理解应用于生产具有商业可行性的产品。基于我们之前在该领域的综述,其中描述了截至2020年超分子化学领域创新的转化潜力,我们现在回顾2021年至2025年该领域的进展,旨在激励研究人员应用超分子化学来解决实际问题,将创新从实验室推向商业市场。
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