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使用 2,4-二硝基苯肼(PH)修饰的太阳能光谱响应花状 Nen-石墨烯量子点(GQDs)作为光催化剂,选择性有氧偶联胺到亚胺。

Selective aerobic coupling of amines to imines using solar spectrum-responsive flower-like Nen-graphene quantum dots (GQDs) decorated with 2, 4-dinitrophenylhydrazine (PH) as a photocatalyst.

机构信息

Department of Chemistry and Environmental Science, Madan Mohan Malaviya University of Technology, Gorakhpur, 273010, India.

Department of Chemistry and Environmental Science, Madan Mohan Malaviya University of Technology, Gorakhpur, 273010, India.

出版信息

Chemosphere. 2023 Nov;341:139697. doi: 10.1016/j.chemosphere.2023.139697. Epub 2023 Aug 9.

Abstract

Indeed, the development of ecologically benign molecular fabrication methods for highly efficient graphene quantum dots-based photocatalysts is of great significant. Graphene quantum dots-based photocatalysts have promising applications in various field, including environmental remediation, energy conversion, and splitting of water. However, ensuring resource reusability and minimizing the environmental impact are crucial considerations in the development. From this perspective, attention has also been paid to the creation of easy to make solar light harvesting graphene quantum dots-based photocatalysts for synthesising pharmaceuticals and functional imines compounds. Imines are excellent significant building blocks in pharmaceutical chemistry and excellent examples of these valuable compounds' synthetic intermediates, and the environmentally friendly oxidative synthesis of imines from amines. Therefore, herein, we designed a facile and efficient condensation route to synthesize the Nen-GQDs@PH photocatalyst. This route involves coupling of 2,4-dinitrophenylhydrazine (PH) with nitrogen-enriched graphene quantum dots (Nen-GQDs). The Nen-GQDs@PH as photocatalyst functions in a highly selective and efficient manner, leading to high amines conversion efficiency to imines (95%). Our results highlight a novel and environmentally safe approach for generating highly selective imines from various types of amines, setting a new benchmark in the current research field.

摘要

事实上,开发生态友好型的分子制造方法来制备高效的基于石墨烯量子点的光催化剂具有重要意义。基于石墨烯量子点的光催化剂在环境修复、能源转换和水分解等各个领域都有广阔的应用前景。然而,确保资源的可重复利用和最小化环境影响是开发过程中至关重要的考虑因素。从这个角度来看,人们也开始关注制备易于制造的基于太阳能收集的石墨烯量子点的光催化剂,以合成药物和功能性亚胺化合物。亚胺是药物化学中的重要构建块,也是这些有价值化合物的合成中间体的优秀例子,而从胺类化合物中进行环境友好的氧化合成亚胺则是一个非常有意义的研究方向。因此,在这里,我们设计了一种简便高效的缩合路线来合成 Nen-GQDs@PH 光催化剂。该路线涉及 2,4-二硝基苯肼(PH)与富氮石墨烯量子点(Nen-GQDs)的偶联。作为光催化剂的 Nen-GQDs@PH 以高效和高选择性的方式起作用,将胺类高效转化为亚胺(95%)。我们的结果突出了一种从各种类型的胺类化合物中生成高选择性亚胺的新颖且环境友好的方法,为当前研究领域树立了新的基准。

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