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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electric Field Effect on Condensed-Phase Molecular Systems. IX. Control of Proton Displacement in Matrix-Isolated Hydrogen Chloride-Water Complexes
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Electric Field Effect on Condensed-Phase Molecular Systems. IX. Control of Proton Displacement in Matrix-Isolated Hydrogen Chloride-Water Complexes

机译:冷凝相分子系统的电场影响。 IX。 基质分离氯化氢 - 水络合物中质子位移的控制

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This article focuses on the manipulation of molecular bond lengths by an external electric field. A uniform dc electric field with strength up to 1.5 x 10(8) V/m was applied to HCl-H2O and HCl-D2O complexes isolated in solid Ar matrices by using the ice film nanocapacitor method. The field-dependent vibrational spectra of the samples showed an extraordinarily large Stark shift of the proton vibration (H-Cl stretch) frequency of the HCl-water complexes in the electric field compared to that of the isolated HCl molecules. The results indicated that the applied electric field reversibly changed the equilibrium position of the acidic proton along the proton-transfer coordinate of the complexes. The proton displacement was highly asymmetric with respect to the elongation and contraction of the H-Cl bond and changed the vibrational coupling behavior between the proton motion and the normal mode of the hydrating D2O molecule.
机译:本文专注于通过外部电场操纵分子键长度。 通过使用冰膜纳米涂料方法将具有高达1.5×10(8)v / m的强度高达1.5×10(8)v / m的均匀直流电场。 与分离的HCl分子相比,样品的现场依赖性振动光谱显示出电场中HCl-水络合物的质子振动(H-C1Reattry)频率的极大的显着偏移。 结果表明,施加的电场沿复合物的质子转移坐标可逆地改变了酸性质子的平衡位置。 质子位移相对于H-C1键的伸长和收缩,并改变质子运动与水合D2O分子的正常模式之间的振动偶联行为的高度不对称。

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