TY - JOUR
T1 - Intermolecular vibration coupling between libration of water and ν2-SOH for clusters HSO4-(H 2O)n
AU - Yu, Jing Jing
AU - Zhang, Yun Hong
AU - Li, Ze Sheng
PY - 2012/10/18
Y1 - 2012/10/18
N2 - The hydrated bisulfate ion clusters (HSO4-(H 2O)n, n = 1-10) were optimized at the M06/6-311++G(d,p) level. The factors affecting ν2-SOH of the clusters involved vibration coupling between ν2-SOH and the water wagging libration mode (W-H2O) and hydrogen bonding effect. In order to understand the vibration coupling between W-H2O and ν2-SOH for the bisulfate clusters, D2O instead of H2O and Se instead of S were used to estimate the uncoupling frequency of ν2-SOH and W-H2O, respectively. For HSO4- ·H 2O-I, the uncoupling frequencies of ν2-SOH and W-H 2O were obtained at 752.0 and 753.4 cm-1. After coupling, the frequencies appeared at 782.2 and 732.6 cm-1. H2S and NH4+ instead of D2O in HSO4 -·D2O-II were compared to analyze the effect of hydrogen bond. The sequence of hydrogen bond strength was found to be HSO 4-·H2S-II < HSO4 -·D2O-II < HSO4 -·NH4+-II with the respective ν2-SOH at 736.7, 740.5, and 802.2 cm-1 increasing in the same order. In HSO4-· (H2O) n, coupling appeared when n was from 1 to 8. For HSO4 -· (D2O)n, no coupling between ν2-SOH and D2O librations made it possible to understand the hydrogen bonding effect on the ν2-SOH. The frequencies of ν2-SOH for clusters HSO4 -(D2O)n almost linearly decreased from 752.0 to 854.6 cm-1 with n from 1 to 10.
AB - The hydrated bisulfate ion clusters (HSO4-(H 2O)n, n = 1-10) were optimized at the M06/6-311++G(d,p) level. The factors affecting ν2-SOH of the clusters involved vibration coupling between ν2-SOH and the water wagging libration mode (W-H2O) and hydrogen bonding effect. In order to understand the vibration coupling between W-H2O and ν2-SOH for the bisulfate clusters, D2O instead of H2O and Se instead of S were used to estimate the uncoupling frequency of ν2-SOH and W-H2O, respectively. For HSO4- ·H 2O-I, the uncoupling frequencies of ν2-SOH and W-H 2O were obtained at 752.0 and 753.4 cm-1. After coupling, the frequencies appeared at 782.2 and 732.6 cm-1. H2S and NH4+ instead of D2O in HSO4 -·D2O-II were compared to analyze the effect of hydrogen bond. The sequence of hydrogen bond strength was found to be HSO 4-·H2S-II < HSO4 -·D2O-II < HSO4 -·NH4+-II with the respective ν2-SOH at 736.7, 740.5, and 802.2 cm-1 increasing in the same order. In HSO4-· (H2O) n, coupling appeared when n was from 1 to 8. For HSO4 -· (D2O)n, no coupling between ν2-SOH and D2O librations made it possible to understand the hydrogen bonding effect on the ν2-SOH. The frequencies of ν2-SOH for clusters HSO4 -(D2O)n almost linearly decreased from 752.0 to 854.6 cm-1 with n from 1 to 10.
UR - http://www.scopus.com/inward/record.url?scp=84867653072&partnerID=8YFLogxK
U2 - 10.1021/jp307534h
DO - 10.1021/jp307534h
M3 - Article
AN - SCOPUS:84867653072
SN - 1520-6106
VL - 116
SP - 12597
EP - 12604
JO - Journal of Physical Chemistry B
JF - Journal of Physical Chemistry B
IS - 41
ER -