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A quantum description of the proton movement in an idealized NHN~+ bridge

机译:理想化NHN〜+桥中质子运动的量子描述

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A series of model calculations was done to analyze the delocalization of the proton in the linking hydrogen bond of the (Dih)2H~+ cation (Dih: 4,5-dihydro-1-imidazole). Standard quantum chemical calculations (B3LYP/D95 + (d,p)) predict a low barrier hydrogen bond (LBHB) and thereby a delocalized proton in the NHN~+ hydrogen bridge. Explicit quantum calculations on the proton indicate that the deolcalization of the proton does not provide enough energy to stabilize a permanent LBHB. Additional Born-Oppenheimer Molecular Dynamics (BOMD) simulations indicate further that the proton is localized at either side of the NHN~+ bridge and that a central proton position is the result of temporal averaging. The possibility of the proton to tunnel from one side to the other side of the NHN~+ bridge increases with the temperature as the trajectory of the (Dih)2H~+ cation runs through regions where the thermal excitation of Dih ring vibrations creates equal bonding opportunities for the proton on both sides of the bridge (vibrationally assisted proton tunneling). The quantum calculations for the proton in (Dih)2H~+ suggest further a broad peak for the 1 ← 0 transition with a maximum at 938 cm~(-1) similar to that observed for LBHBs. Moreover, the asymmetric NHN~+ bridge in a thermally fluctuating environment is strong enough to create a significant peak at 1828 cm~(-1) for the 2 ← 0 transition, while contributions from the 2 ← 1 are expected to be weak for the same reason.
机译:进行了一系列模型计算,以分析质子在(Dih)2H〜+阳离子(Dih:4,5-二氢-1-咪唑)的氢键中的离域作用。标准量子化学计算(B3LYP / D95 +(d,p))预测低势垒氢键(LBHB),从而预测NHN〜+氢桥中的离域质子。质子的显式量子计算表明,质子的脱醇不能提供足够的能量来稳定持久的LBHB。另外的Born-Oppenheimer分子动力学(BOMD)模拟进一步表明,质子位于NHN ++桥的任一侧,并且质子中心位置是时间平均的结果。随着(Dih)2H〜+阳离子的轨迹穿过Dih环振动的热激发产生相等键合的区域,质子从NHN〜+桥的一侧隧穿到另一侧的可能性随着温度的升高而增加。桥梁两侧的质子的机会(振动辅助质子隧穿)。对(Dih)2H〜+中质子的量子计算表明,在1←0跃迁中有一个更宽的峰,在938 cm〜(-1)处有一个最大值,与LBHBs相似。此外,在热波动的环境中,非对称NHN〜+桥足够坚固,足以在2←0跃迁处的1828 cm〜(-1)处产生明显的峰,而对于2←0跃迁,预计2←1的贡献会很弱。同样的原因。

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