Department of Chemistry and Biochemistry, University of Mississippi, University, Mississippi 38677, United States.
J Phys Chem A. 2011 Jun 23;115(24):6426-31. doi: 10.1021/jp112016j. Epub 2011 May 10.
N-methyliminodiacetic acid (MIDA)-protected boronate esters are a new class of reagents that offer great promise in iterative Suzuki-Miyaura cross-coupling reactions. Compared to earlier reagents, MIDA esters are easily handled and are benchtop stable under air indefinitely. The success of this new species is tied to its unique molecular architecture. Compared to the simpler B-N containing molecules ammonia borane and trimethylamine borane, MIDA esters are much larger, and the sp(3) hybridized boron atom is secured by two five membered rings, making this molecular class stable for spectroscopic study. Here, we present infrared, Raman, and surface enhanced Raman (SERS) spectra of methylboronic acid MIDA ester. Comparisons of the spectroscopic results to those from electronic structure calculations suggest that the B-N stretching mode in this molecule lies in the range 560-650 cm(-1), making it among the lowest energy vibrations observed to date that can be primarily attributed to B-N stretching.
N-甲基亚氨基二乙酸(MIDA)保护的硼酸酯是一类新的试剂,在迭代的 Suzuki-Miyaura 交叉偶联反应中具有很大的应用前景。与早期的试剂相比,MIDA 酯易于处理,在空气中无限期地在台面上稳定。这种新物质的成功与其独特的分子结构有关。与更简单的含 B-N 的分子氨硼烷和三甲胺硼烷相比,MIDA 酯的体积更大,sp(3)杂化的硼原子由两个五元环固定,使这个分子类别在光谱研究中稳定。在这里,我们提出了甲基硼酸 MIDA 酯的红外、拉曼和表面增强拉曼(SERS)光谱。将光谱结果与电子结构计算的结果进行比较表明,该分子中的 B-N 伸缩模式位于 560-650 cm(-1)范围内,使其成为迄今为止观察到的主要归因于 B-N 伸缩的最低能量振动之一。