University of Angers, CNRS, MOLTECH-ANJOU, SFR MATRIX, F-49000, Angers, France.
Department of Chemical and Biomolecular Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, 03722, Seoul, South Korea.
Chem Asian J. 2023 Mar 14;18(6):e202300014. doi: 10.1002/asia.202300014. Epub 2023 Feb 8.
Produced at ton scale, vat dyes are major environmental pollutants generated by the textile industry. However, they represent ideal and accessible candidates for chemical upcycling since they are usually composed of large π-conjugated scaffolds. Based on the valorization of "old" products, waste or even contaminant into high-added value goods, this concept can be easily transposed to the laboratories. As a contribution to the current environmental and ecological transition, we demonstrate herein the valorization/upcycling of wastewaters generated during the dyeing procedure. To do so, the reduced (leuco) form of vat violet 10, also known as isoviolanthrone, was functionalized to afford a readily soluble derivative that was subsequently and successfully used as active material in operating solution processed light-emitting electrochemical cells, that is, from textile dyeing to high-tech application.
在吨级规模下生产的还原染料是纺织工业产生的主要环境污染物。然而,由于它们通常由大的π共轭支架组成,因此它们是化学升级的理想和可及的候选物。基于“旧”产品、废物甚至污染物的高附加值转化的概念,可以很容易地将其应用于实验室。作为对当前环境和生态转型的贡献,我们在此证明了在染色过程中产生的废水的回收/升级利用。为此,还原形式的还原紫 10(也称为异菘蓝酮)被功能化,得到一种易溶的衍生物,随后成功地将其用作操作溶液处理的发光电化学电池中的活性材料,即从纺织染色到高科技应用。