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A Comparison of the Structure and Bonding in the Aliphatic Boronic R–B(OH)2 and Borinic R–BH(OH) acids (R=H; NH2 OH and F): A Computational Investigation

机译:脂肪族硼酸R–B(OH)2和硼酸R–BH(OH)酸(R = H; NH2OH和F)的结构和键的比较:计算研究

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摘要

Boronic acids, R–B(OH)2, play an important role in synthetic, biological, medicinal, and materials chemistry. This investigation compares the structure and bonding surrounding the boron atoms in the simple aliphatic boronic acids, R–B(OH)2 (R = H; NH2, OH, and F) and the analogous borinic acids, R–BH(OH). Geometry optimizations were performed using second-order Møller-Plesset perturbation theory (MP2) with the Dunning-Woon aug-cc-pVTZ, aug-cc-pVQZ and aug-cc-pV5Z basis sets; single-point CCSD(FC)/aug-cc-pVTZ//MP2(FC)/aug-cc-pVTZ level calculations were used to generate a QCI density for Natural Bond Orbital analyses of the bonding. The optimized boron-oxygen bond lengths for the X–B–Ot–H trans-branch of the endo-exo form of the boronic acids and for the X–B–O–H cis-branch of the boronic and borinic acids (X = N, O, and F respectively) decrease as the electronegativity of X increases. The boron-oxygen bond lengths are generally longer in the endo-exo or anti forms of the boronic acids than in the corresponding borinic acids. NBO analyses suggest the boron-oxygen bond in H2BOH is a double bond; the boron-oxygen bonding in the remaining boronic and borinic acids in this study have a significant contribution from dative pπ-pπ bonding. Values for ΔH2980 for the highly balanced reaction, R–B(OH)2 + R–BH2 → 2 R–BH(OH), suggest that the bonding surrounding the boron atom is stronger in the borinic acid than in the corresponding boronic acid.
机译:硼酸R–B(OH)2在合成,生物,药物和材料化学中起重要作用。这项研究比较了简单脂肪族硼酸R–B(OH)2(R = H; NH2,OH和F)和类似的硼酸R–BH(OH)中硼原子周围的结构和键。使用二阶Møller-Plesset微扰理论(MP2),Dunning-Woon aug-cc-pVTZ,aug-cc-pVQZ和aug-cc-pV5Z基集进行几何优化。单点CCSD(FC)/ aug-cc-pVTZ // MP2(FC)/ aug-cc-pVTZ水平计算用于为键的自然键轨道分析生成QCI密度。内酸形式的硼酸X–B–Ot–H反式分支以及硼酸和硼酸的X–B–O–H顺式分支的最佳硼氧键长度(X分别随着N的电负性的增加而降低(分别为N,O和F)。硼酸的内-外或反形式中的硼-氧键长度通常比相应的硼酸中的更长。 NBO分析表明,H2BOH中的硼-氧键为双键。在这项研究中,剩余的硼酸和硼酸中的硼-氧键对和式pπ-pπ键起重要作用。 Δ H 298 0 用于高度平衡的反应, R–B(OH)2 + R–BH2→2 R–BH(OH),表明硼酸中硼原子周围的键强于相应的硼酸。

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