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Infrared detection of (H2O)_(20) isomers of exceptional stability: a drop-like and a face-sharing pentagonal prism cluster

机译:红外检测(H2O)_(20)异构体的特殊稳定性:滴状和面部共享五角形棱镜簇

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Water clusters with internally solvated water molecules are widespread models that mimic the local environment of the condensed phase. The appearance of stable (H2O)? cluster isomers having a fully coordinated interior molecule has been theoretically predicted to occur around the n = 20 size range. However, our current knowledge about the size regime in which those structures become energetically more stable has remained hypothetical from simulations in lieu of the absence of precisely size-resolved experimental measurements. Here we report size and isomer selective infrared (IR) spectra of (H2O)_(20) clusters tagged with a sodium atom by employing IR excitation modulated photoionization spectroscopy. The observed absorption patterns in the OH stretching region are consistent with the theoretically predicted spectra of two structurally distinct isomers of exceptional stability: a drop-like cluster with a fully coordinated (interior) water molecule and an edge-sharing pentagonal prism cluster in which all atoms are on the surface. The drop-like structure is the first experimentally detected water cluster exhibiting the local connectivity found in liquid water.
机译:具有内部溶剂化水分子的水簇是普遍的模型,用于模拟冷凝阶段的局部环境。出现稳定(H2O)?理论上已经预测了具有完全协调的内部分子的簇异构体在n = 20尺寸范围内发生。然而,我们目前关于这些结构变得强劲更稳定的规模制度的知识仍然从模拟中留下假设,代替没有精确的尺寸解决的实验测量。在这里,通过采用IR激发调节光相消光谱,我们报告(H2O)_(20)簇的尺寸和异构体选择性红外(IR)谱标记为钠原子的簇。 OH拉伸区域中观察到的吸收图案与具有卓越稳定性的两个结构上不同异构体的理论上预测的光谱一致:具有完全协调的(内部)水分子的滴簇和边缘共享五角形棱镜簇原子在表面上。掉落的结构是第一个实验检测的水簇,其显示在液态水中发现的局部连接。

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