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Computational characterization of the hydroxylamino (-NH-OH) group

机译:羟氨基(-NH-OH)基团的计算表征

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We have examined computationally some properties of the hydroxylamino group, -N(H)-OH, in different molecular environments. Geometries were optimized at the B3LYP/6-31G** level and used to calculate B3LYP/6-311G(3df,2p) energy differences and HF/6-31G* electrostatic potentials V(r) and local ionization energies (I) over bar (r). V(r) and (I) over bar (r) were evaluated on the molecular surfaces defined by the 0.001 au contours of the electronic densities. Two important factors in determining the -N(H)-OH structure are lone pair repulsion and possible intramolecular hydrogen bonding involving the remainder of the molecule, which can affect the pyramidal character of the nitrogen. The nitrogen and oxygen lone pairs produce regions of negative potential, those of the oxygen being stronger. These should function as hydrogen bond acceptors, although not as well as NH3 and H2O. The nitrogen lone pairs, although less negative, are expected to be the more basic, often roughly similar to pyridine. The amine and hydroxyl hydrogens tend to have quite positive potentials, and should be potent in hydrogen bonding. Depending upon the remainder of the molecule, the hydroxyl and the amine protons can range from essentially. no acidity to weak to quite strong. The hydroxylamino group is estimated to have an average polarizability of 2.38 angstrom(3) and as a substituent on aromatic rings to be activating and ortho, para-directing, with Hammett delta(p) = -0.37. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:我们已经通过计算检查了在不同分子环境中羟氨基基团-N(H)-OH的某些性质。在B3LYP / 6-31G **水平上优化了几何形状,并用于计算B3LYP / 6-311G(3df,2p)能量差以及HF / 6-31G *静电势V(r)和局部电离能(I)酒吧(r)。在(r)上的V(r)和(I)在由0.001 au电子密度轮廓定义的分子表面上进行评估。决定-N(H)-OH结构的两个重要因素是孤对排斥和可能涉及分子其余部分的分子内氢键,这会影响氮的金字塔结构。氮和氧孤对产生负电势的区域,氧的对更强。尽管不如NH3和H2O,它们应起氢键受体的作用。氮孤对虽然负值较小,但预计会更碱性,通常与吡啶大致相似。胺和羟基氢倾向于具有相当大的正电势,并且在氢键键合中应该很有效。取决于分子的其余部分,羟基和胺质子的范围可以从基本上不等。没有酸度从弱到相当强。估计羟氨基的平均极化度为2.38埃(3),并作为芳香环上的取代基被激活和邻位,对位定向,具有Hammett delta(p)= -0.37。版权所有(c)2007 John Wiley&Sons,Ltd.

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