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Theoretical investigations on Zundel cation present inside boron-nitride nanotubes: Effect of confinement and hydrogen bonding

机译:氮化硼纳米管内存在的Zundel阳离子的理论研究:约束和氢键的影响

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The properties of protonated water systems in nano-confinement differ significantly from its bulk counterparts mainly due to the geometric constraint and nature of water-medium interactions. Herein, we have investigated the structure, vibrational spectra and proton transfer energetics of Zundel cation (ZC) under the confinement of boron-nitride nanotubes (BNNTs) by varying the degree of confinement in a systematic manner. Our results based on dispersion-corrected density functional theory (DFT) based methods reveal that the structure of ZC is significantly modified under the confinement and the nature of interaction largely depends on the diameter of BNNT. The ZC effectively forms hydrogen bonds through H-water...N-BNNT with BNNT. Among the BNNTs considered in the present study, the maximum interaction energy of ZC and minimum energy barrier for proton transfer are observed for the case of BNNT (5,5). This implies that this particular nanotube can facilitate the proton to easily hop between water molecules of a confined protonated water system. (C) 2014 Elsevier B.V. All rights reserved.
机译:纳米约束中的质子化水系统的性质与其本体对应物有显着差异,这主要是由于几何约束和水-介质相互作用的性质。在本文中,我们通过系统地改变约束度来研究在氮化硼纳米管(BNNTs)约束下Zundel阳离子(ZC)的结构,振动光谱和质子传递能。我们基于基于色散校正的密度泛函理论(DFT)的方法的结果表明,在限制条件下ZC的结构发生了显着改变,相互作用的性质很大程度上取决于BNNT的直径。 ZC通过H-water ... N-BNNT与BNNT有效地形成氢键。在本研究中考虑的BNNT中,对于BNNT,观察到ZC的最大相互作用能和质子转移的最小能垒(5,5)。这意味着该特定的纳米管可以促进质子容易地在受限的质子化水系统的水分子之间跳跃。 (C)2014 Elsevier B.V.保留所有权利。

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