Departamento de Química Orgánica and Instituto de Síntesis Orgánica (ISO), Facultad de Ciencias, Universidad de Alicante, Apdo. 99, 03080 Alicante, Spain.
Molecules. 2022 Dec 2;27(23):8445. doi: 10.3390/molecules27238445.
Our society is facing a tremendous challenge to become more sustainable in every sphere of life. Regarding the chemical industry, one of the most significant issues to be addressed is the use of volatile organic compounds (VOCs) as solvents because they are petrol-derived and most of them are toxic and flammable. Among the possible solutions, deep eutectic solvents (DESs) have emerged as sustainable alternatives to VOCs in organic catalyzed transformations and other fields. The advantages of these new reaction media are not only related to their more benign physical and chemical properties and, for most of them, their renewable sources but also due to the possibility of being recycled after their use, increasing the sustainability of the catalyzed process in which they are involved. However, their use as media in catalytic transformations introduces new challenges regarding the compatibility and activity of known catalysts. Therefore, designed catalysts and "" DESs systems have been developed to overcome this problem, to maximize the reaction outcomes and to allow the recyclability of the catalyst/media system. Over the last decade, the popularity of these solvents has steadily increased, with several examples of efficient metal-catalyzed organic transformations, showing the efficiency of the catalysts/DES system, compared to the related transformations carried out in VOCs. Additionally, due to the inherent properties of the DES, unknown transformations can be carried out using the appropriated catalyst/DES system. All these examples of sustainable catalytic processes are compiled in this review.
我们的社会正面临着一个巨大的挑战,即在生活的各个领域都变得更加可持续。就化学工业而言,需要解决的最重要的问题之一是使用挥发性有机化合物(VOCs)作为溶剂,因为它们是石油衍生的,其中大多数是有毒和易燃的。在可能的解决方案中,深共晶溶剂(DESs)作为 VOCs 在有机催化转化和其他领域的可持续替代品出现了。这些新反应介质的优点不仅与它们更良性的物理和化学性质有关,而且对于大多数来说,它们的可再生来源,而且由于它们在使用后可以回收,从而提高了它们所涉及的催化过程的可持续性。然而,它们作为催化转化中的介质的使用带来了关于已知催化剂的相容性和活性的新挑战。因此,设计了催化剂和“DESs 系统”来克服这个问题,以最大化反应结果,并允许催化剂/介质系统的可回收性。在过去的十年中,这些溶剂的受欢迎程度稳步上升,有几个高效金属催化有机转化的例子,显示了催化剂/DES 系统的效率,与在 VOCs 中进行的相关转化相比。此外,由于 DES 的固有性质,可以使用适当的催化剂/DES 系统进行未知的转化。所有这些可持续催化过程的例子都在这篇综述中进行了汇编。