Spectroscopic snapshot for neutral water nonamer (H2O)9: Adding a H2O onto a hydrogen bond-unbroken edge of (H2O)8

Author:

Zheng Huijun12ORCID,Zhang Yang-Yang34ORCID,Wang Tiantong12,Jiang Shuai1,Yan Wenhui12ORCID,Wang Chong12,Zhao Ya1,Hu Han-Shi3,Yang Jiayue1,Zhang Weiqing1ORCID,Wu Guorong1ORCID,Dai Dongxu1,Li Gang1ORCID,Li Jun34ORCID,Yang Xueming124,Jiang Ling1ORCID

Affiliation:

1. State Key Laboratory of Molecular Reaction Dynamics, Dalian Institute of Chemical Physics, Chinese Academy of Sciences 1 , Dalian 116023, China

2. University of Chinese Academy of Sciences 2 , 19A Yuquan Road, Beijing 100049, China

3. Department of Chemistry and Engineering Research Center of Advanced Rare-Earth Materials of Ministry of Education, Tsinghua University 3 , Beijing 100084, China

4. Department of Chemistry and Guangdong Provincial Key Laboratory of Catalytic Chemistry, Southern University of Science and Technology 4 , Shenzhen 518055, China

Abstract

Structural characterization of neutral water clusters is crucial to understanding the structures and properties of water, but it has been proven to be a challenging experimental target due to the difficulty in size selection. Here, we report the size-specific infrared spectra of confinement-free neutral water nonamer (H2O)9 based on threshold photoionization, using a tunable vacuum ultraviolet free-electron laser. Distinct OH stretch vibrational fundamentals in the 3200–3350 cm−1 region are observed, providing unique spectral signatures for the formation of an unprecedented (H2O)9 structure evolved by adding a ninth water molecule onto a hydrogen bond-unbroken edge of the (H2O)8 octamer with D2d symmetry. This nonamer structure coexists with the five previously identified structures that can be viewed as derived by inserting a ninth water molecule into a hydrogen bond-broken edge of the D2d/S4 octamer. These findings provide key microscopic information for systematic understanding of the formation and growth mechanism of dynamical hydrogen-bonding networks that are responsible for the structure and properties of condensed-phase water.

Funder

National Natural Science Foundation of China

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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