Iwaoka Michio, Komatsu Hiroto, Katsuda Takayuki, Tomoda Shuji
Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Komaba, Meguro-ku, Tokyo 153-8902, Japan.
J Am Chem Soc. 2004 Apr 28;126(16):5309-17. doi: 10.1021/ja049690n.
To investigate the nature of nonbonded Se...O interactions, three series of 2-substituted benzeneselenenyl derivatives [2-(CHO)C6H4SeX (1), 2-(CH2OH)C6H4SeX, (2), 2-(CH2OiPr)C6H4SeX (3); X = Cl, Br, CN, SPh, SeAr, Me] were synthesized. The 17O NMR absorption observed for 17O-enriched aldehydes 1 appeared upfield relative to benzaldehyde (PhCHO), while the opposite downfield shifts relative to benzyl alcohol (PhCH2OH) were observed for 17O-enriched alcohols 2 and ethers 3. The magnitude of both the upfield and the downfield shifts became larger as the electron-withdrawing ability of a substituent X increased. Quantum chemical calculations at the B3LYP level revealed that for all model compounds the most stable conformer has an intramolecular nonbonded Se.O interaction. Thus, the relative 17O NMR chemical shifts (DeltadeltaO) for 1-3 would reflect the strengths of the Se...O interactions. The natural bond orbital (NBO) analysis demonstrated that the stabilization energy due to an nO --> sigma Se-X orbital interaction (ESe...O) correlates with the Se...O atomic distance on a single curve irrespective of the type of the O atom. On the other hand, the atoms in molecules (AIM) analysis showed that the nonbonded Se...O interactions can be characterized by the presence of a bond critical point, the total energy density (HSe...O) of which decreases with strengthening of the interaction. The results suggested that Se...O interactions have a dominant covalent character rather than an electrostatic one.
为了研究非键合硒……氧相互作用的本质,合成了三个系列的2-取代苯硒基衍生物[2-(CHO)C6H4SeX (1)、2-(CH2OH)C6H4SeX (2)、2-(CH2OiPr)C6H4SeX (3);X = Cl、Br、CN、SPh、SeAr、Me]。相对于苯甲醛(PhCHO),观察到富含17O的醛1的17O NMR吸收出现在高场,而相对于苄醇(PhCH2OH),观察到富含17O的醇2和醚3出现相反的低场位移。随着取代基X吸电子能力的增加,高场和低场位移的幅度都变大。在B3LYP水平上的量子化学计算表明,对于所有模型化合物,最稳定的构象异构体都存在分子内非键合硒……氧相互作用。因此,1-3的相对17O NMR化学位移(δδO)将反映硒……氧相互作用的强度。自然键轨道(NBO)分析表明,由于nO→σSe-X轨道相互作用(ESe...O)引起的稳定能与硒……氧原子距离在一条单曲线上相关,而与O原子的类型无关。另一方面,分子中的原子(AIM)分析表明,非键合硒……氧相互作用可以通过键临界点的存在来表征,其总能量密度(HSe...O)随着相互作用的增强而降低。结果表明,硒……氧相互作用具有主要的共价性质而非静电性质。