首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Study of the dative bond in 2-aminoethoxydiphenyl borate at various levels of theory: Another poor performance of the B3LYP method for B-N dative bounds
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Study of the dative bond in 2-aminoethoxydiphenyl borate at various levels of theory: Another poor performance of the B3LYP method for B-N dative bounds

机译:在各种理论水平上研究2-氨基乙氧基二苯硼酸酯中键合的键合:B3LYP方法对B-N键合键的另一种较差的性能

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摘要

Aminoethoxydiphenyl borate (2-APB), 1. is a potent inhibitor of store-operated calcium entry channels (SOCCs). Other SOCC inhibitors are being; investigated as promising pharmacological agents for a variety of conditions. Though toxic, 2-APB could be useful in the development of additional inhibitors, but its preferred binding structure must first be determined. Thus, we performed ab initio calculations to study the conformers and the strength of the dative bond of 2-APB. As a first step, we performed a series of computations at various levels of theory. We obtained vastly different dissociation energies for the dative bond depending on whether we used MP2 or B3LYP (7-10 kcal/mol different). This discrepancy has previously been observed for other B-N dative bonds by Gilbert, who found that the MP2 values were in much better agreement with experimental values (Gilbert, T. M. J. Phys. Chem. A 2004, 108, 2550-2554). Since we lacked experimental data for comparison, we performed CCSD(T) calculations and found them to have similar results to those from MP2. Thus, we conclude that MP2 is more accurate for 2-APB. The dissociation free energy at the MP2 level is 7 kcal/mol and indicates that the dative bond conformer will be the predominant structure in the gas phase. The dissociation energy is comparatively low due to the electron donation from the oxygen atom to the boron atom and due to the ring strain in the dative bond conformer.
机译:氨基乙氧基二苯硼酸盐(2-APB)1.是一种有效的钙存储通道(SOCCs)抑制剂。其他SOCC抑制剂正在被使用。作为多种条件的有希望的药理学研究药物。虽然2-APB有毒,但在开发其他抑制剂时可能有用,但必须首先确定其优选的结合结构。因此,我们进行了从头算的研究,以研究2-APB的构象异构体和键的强度。第一步,我们在各种理论水平上进行了一系列计算。根据我们使用的是MP2还是B3LYP(7-10 kcal / mol不同),我们获得了对于键的解离能量的极大不同。先前已经由吉尔伯特(Gilbert)观察到其他B-N导数键的这种差异,他们发现MP2值与实验值更好地吻合(Gilbert,T. M. J. Phys。Chem。A 2004,108,2550-2554)。由于我们缺乏用于比较的实验数据,因此我们进行了CCSD(T)计算,发现它们具有与MP2相似的结果。因此,我们得出结论,对于2-APB,MP2更准确。 MP2水平的解离自由能为7 kcal / mol,表明在气相中主要的键构象异构体将是主要结构。由于从氧原子到硼原子的电子给体以及在键合构象构象中的环应变,离解能较低。

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