Asmus Sören, Beckendorf Stephan, Zurro Mercedes, Mück-Lichtenfeld Christian, Fröhlich Roland, García Mancheño Olga
Organisch-Chemisches Institut, Münster University, Corrensstrasse 40, 48149 Münster (Germany); New address: Institute for Organic Chemistry, University of Regensburg, Universitätsstrasse 31, 93053 Regensburg (Germany).
Chem Asian J. 2014 Aug;9(8):2178-86. doi: 10.1002/asia.201402237. Epub 2014 Jun 27.
A study on the key parameters involved in the anion-binding process and catalytic activity of the new family of CH-bond-based, anion-binding bis-triazole catalysts BisTri was carried out. The effects of substitution at the side arms and the central backbone structure of the catalyst were investigated. Electron-deficient 3,5-bis(trifluoromethyl)phenyl groups at the side arms led to the most strongly bound structures. The evaluation of differently shaped anions showed remarkable binding selectivity of the BisTri derivatives for the chloride anion. Examination of various nucleophiles in a model catalytic alkylation reaction suggested a more complex mechanism than the expected SN 1, in which the nucleophiles also participate partially in activation of the electrophile. DFT calculations were performed to investigate the relationship between the catalyst conformation and the binding affinity. Finally, in silico design and identification of a new, more efficient BisTri catalyst was accomplished.
对基于CH键的新型阴离子结合双三唑催化剂BisTri家族中阴离子结合过程和催化活性所涉及的关键参数进行了研究。考察了催化剂侧链取代和中心主链结构的影响。侧链上缺电子的3,5-双(三氟甲基)苯基导致形成结合最牢固的结构。对不同形状阴离子的评估表明,BisTri衍生物对氯离子具有显著的结合选择性。在模型催化烷基化反应中对各种亲核试剂的研究表明,其机理比预期的SN 1更复杂,其中亲核试剂也部分参与亲电试剂的活化。进行了密度泛函理论(DFT)计算以研究催化剂构象与结合亲和力之间的关系。最后,通过计算机辅助设计完成了一种新型、更高效的BisTri催化剂的鉴定。