Kwakernaak Markus C, Koel Marijn, van den Berg Peter J L, Kelder Erik M, Jager Wolter F
Department of Chemical Engineering, Delft University of Technology Van der Maasweg 9 2629 HZ Delft The Netherlands
Department of Radiation Science and Technology/Reactor Institute Delft, Delft University of Technology 2629 JB Delft The Netherlands.
Org Chem Front. 2022 Jan 10;9(4):1090-1108. doi: 10.1039/d1qo01723c. eCollection 2022 Feb 15.
A novel protocol for the synthesis of perylene diimides (PDIs), by reacting perylene dianhydride (PDA) with aliphatic amines is reported. Full conversions were obtained at temperatures between 20 and 60 °C, using DBU as the base in DMF or DMSO. A "green" synthesis of PDIs, that runs at higher temperatures, was developed using KCO in DMSO. The reaction sequence for the imidization process, perylene amic acid intermediates (PAAs), has been confirmed experimentally aided by the synthesis and full characterization of stable model amic acid salts and amic esters. Kinetic studies, using absorption spectroscopy, have established that PDI formation proceeds fast amic acid formation, followed by a slow conversion to imides. Solubility of the intermediate PAA salts is found to be low and rate-limiting. Based on this finding, quantitative PDI synthesis at room temperature was achieved by diluting the reaction mixture with water, the solvent in which PAA salts have better solubility. Thus, the otherwise harsh synthesis of PDIs has been transformed into an extremely convenient functional group tolerant and highly efficient reaction that runs at room temperature.
报道了一种通过苝二酐(PDA)与脂肪族胺反应合成苝二酰亚胺(PDI)的新方法。在20至60°C的温度下,以DBU为碱,在DMF或DMSO中可实现完全转化。使用碳酸钾在DMSO中开发了一种在较高温度下进行的PDI“绿色”合成方法。通过稳定的模型酰胺酸盐和酰胺酯的合成及全面表征,实验证实了酰亚胺化过程中苝酰胺酸中间体(PAA)的反应序列。利用吸收光谱进行的动力学研究表明,PDI的形成先于快速的酰胺酸形成,随后是缓慢转化为酰亚胺。发现中间体PAA盐的溶解度较低且为限速因素。基于这一发现,通过用水稀释反应混合物实现了室温下的定量PDI合成,水是PAA盐具有更好溶解度的溶剂。因此,原本苛刻的PDI合成已转变为一种极其方便、官能团耐受性强且高效的反应,该反应在室温下进行。