Nguyen Alex L, Bobadova-Parvanova Petia, Hopfinger Melissa, Fronczek Frank R, Smith Kevin M, Vicente M Graça H
†Department of Chemistry, Louisiana State University, Baton Rouge, Louisiana 70803, United States.
‡Department of Chemistry, Rockhurst University, Kansas City, Missouri 64110, United States.
Inorg Chem. 2015 Apr 6;54(7):3228-36. doi: 10.1021/ic502821m. Epub 2015 Mar 23.
A series of boron-disubstituted O-BODIPYs were synthesized, and their structures and spectroscopic properties were investigated using both computational and experimental methods. Three methods were investigated for the preparation of 4,4-dimethoxy-BODIPYs bearing electron-donating or electron-withdrawing 8-aryl groups: method A employs refluxing in the presence of NaOMe/MeOH, method B uses AlCl3 in refluxing dichloromethane followed by addition of methanol as nucleophile, and method C involves activation of the BODIPYs using TMSOTf in refluxing toluene followed by addition of methanol. The yields obtained depend on the method used and the structure of the starting BODIPYs; for example, 1a and 3a were most efficiently prepared using method C (98 and 70%, respectively), while 2a was best prepared by method A (50%). Methods B and C were employed for the synthesis of seven new 4,4-dialkoxy-BODIPYs. 4,4-Dipropargyloxy-BODIPY 1e reacted under Cu(I)-catalyzed alkyne-azide Huisgen cycloaddition conditions to produce 4,4-bis(1,2,3-triazole)-BODIPY 4 in 78% yield. The substitution of the fluorides for alkoxy groups on the BODIPYs had no significant effect on the absorption and emission wavelengths but altered their fluorescence quantum yields. Among this series of dialkoxy-BODIPYs, the 4,4-dipropargyloxy 1e and its corresponding bis(1,2,3-triazole) 4 show the largest quantum yields in toluene and THF, respectively.
合成了一系列硼双取代的O-硼二吡咯,并使用计算和实验方法研究了它们的结构和光谱性质。研究了三种制备带有供电子或吸电子8-芳基的4,4-二甲氧基-硼二吡咯的方法:方法A是在NaOMe/MeOH存在下回流,方法B是在回流的二氯甲烷中使用AlCl3,然后加入甲醇作为亲核试剂,方法C是在回流的甲苯中使用TMSOTf活化硼二吡咯,然后加入甲醇。得到的产率取决于所用方法和起始硼二吡咯的结构;例如,1a和3a使用方法C制备效率最高(分别为98%和70%),而2a使用方法A制备效果最佳(50%)。方法B和C用于合成七种新的4,4-二烷氧基-硼二吡咯。4,4-二炔丙氧基-硼二吡咯1e在Cu(I)催化的炔烃-叠氮化物惠斯根环加成条件下反应,以78%的产率生成4,4-双(1,2,3-三唑)-硼二吡咯4。硼二吡咯上氟化物被烷氧基取代对吸收和发射波长没有显著影响,但改变了它们的荧光量子产率。在这一系列二烷氧基-硼二吡咯中,4,4-二炔丙氧基1e及其相应的双(1,2,3-三唑)4分别在甲苯和四氢呋喃中显示出最大的量子产率。