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The influence of large-amplitude librational motion on the hydrogen bond energy for alcohol–water complexes

机译:大幅度解放运动对醇 - 水配合物氢键能的影响

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摘要

The far-infrared absorption spectra have been recorded for hydrogen-bonded complexes of water with methanol and t-butanol embedded in cryogenic neon matrices at 2.8 K. The partial isotopic substitution of individual subunits enabled by a dual inlet deposition procedure provides for the first time unambiguous assignments of the intermolecular high-frequency out-of-plane and low-frequency in-plane donor OH librational modes for mixed alcohol–water complexes. The vibrational assignments confirm directly that water acts as the hydrogen bond donor in the most stable mixed complexes and the tertiary alcohol is a superior hydrogen bond acceptor. The class of large-amplitude donor OH librational motion is shown to account for up to 5.1 kJ mol of the destabilizing change of vibrational zero-point energy upon intermolecular OHO hydrogen bond formation. The experimental findings are supported by complementary electronic structure calculations at the CCSD(T)-F12/aug-cc-pVTZ level of theory.
机译:已记录了水与甲醇和叔丁醇在2.8 K下嵌入氢和甲醇和叔丁醇的氢键复合物的远红外吸收光谱。通过双入口沉积程序实现的单个亚基的部分同位素取代首次提供醇水混合物的分子间高频平面外和低频平面内供体OH释放模式的明确分配。振动分配直接证实了水在最稳定的混合配合物中充当氢键供体,而叔醇是优良的氢键受体。大分子供体的OH自由运动类型显示出分子间OHO氢键形成时振动零点能量的失稳变化高达5.1 kJ mol。实验结果得到了CCSD(T)-F12 / aug-cc-pVTZ理论水平的补充电子结构计算的支持。

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