Dogutan Dilek Kiper, Lindsey Jonathan S
Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695-8204, USA.
J Org Chem. 2008 Sep 5;73(17):6728-42. doi: 10.1021/jo8010396. Epub 2008 Aug 7.
A new route to bilanes and porphyrins bearing four distinct meso substituents has been studied to elucidate the scope and gain entry to previously inaccessible compounds. The route entails (i) synthesis of a 1-bromo-19-acylbilane by acid-catalyzed condensation of a 1-acyldipyrromethane and a 9-bromodipyrromethane-1-carbinol and (ii) intramolecular cyclization of the 1-bromo-19-acylbilane in the presence of a metal salt (MgBr2, 3 mol equiv) and a non-nucleophilic base (DBU, 10 mol equiv) in a noncoordinating solvent (toluene) at 115 degrees C exposed to air to afford the corresponding magnesium(II) porphyrin. In this study, two sets of bilanes were initially prepared to explore substituent effects. In the first set, all bilanes vary only in the nature of the substituent at the 10-position. In the second set, all bilanes vary only in the nature of the substituent attached to the acyl unit (the 20-position). The substituents examined at the 10- and 20-positions include alkyl, aryl (electron-rich, electron-deficient, hindered), heteroaryl, ester, or no substituent (-H). The bilanes were obtained in 35-87% yield, and the target porphyrins in up to 60% yield. Further study of the scope focused on bilanes and porphyrins bearing three heterocyclic substituents (o-, m-, p-pyridyl) or four alkyl groups (ethyl, propyl, butyl, pentyl), in which case microwave irradiation was used for the porphyrin-forming step. Altogether, 17 bilanes and 19 porphyrins were prepared and characterized. In summary, the new route provides access to meso-substituted bilanes and porphyrins for which access is limited via other methods.
为了阐明其适用范围并合成之前难以获得的化合物,人们研究了一种合成带有四个不同中位取代基的双吡咯烷和卟啉的新路线。该路线包括:(i) 通过1-酰基二吡咯甲烷与9-溴二吡咯甲烷-1-甲醇的酸催化缩合反应合成1-溴-19-酰基双吡咯烷;(ii) 在115℃下,于非配位溶剂(甲苯)中,在金属盐(MgBr₂,3 mol当量)和非亲核碱(DBU,10 mol当量)存在下,使1-溴-19-酰基双吡咯烷进行分子内环化反应,同时暴露于空气中,以得到相应的镁(II)卟啉。在本研究中,最初制备了两组双吡咯烷以探究取代基效应。在第一组中,所有双吡咯烷仅在10位取代基的性质上有所不同。在第二组中,所有双吡咯烷仅在连接到酰基单元(20位)的取代基的性质上有所不同。在10位和20位所研究的取代基包括烷基、芳基(富电子、缺电子、受阻)、杂芳基、酯基或无取代基(-H)。双吡咯烷的产率为35 - 87%,目标卟啉的产率高达60%。对适用范围的进一步研究集中在带有三个杂环取代基(邻、间、对吡啶基)或四个烷基(乙基、丙基、丁基、戊基)的双吡咯烷和卟啉上,在这种情况下,卟啉形成步骤采用微波辐射。总共制备并表征了17种双吡咯烷和19种卟啉。总之,这条新路线为通过其他方法难以获得的中位取代双吡咯烷和卟啉提供了合成途径。