A temperature-dependent effect of Na2CO3 on water structure investigated from Raman spectroscopy

Q Qingcheng Hu (Inner Mongolia University of Science and Technology, College of Mining and Coal 1 , Baotou 014010,) Y Yajie Ma X Xiang’en Wu (Hainan Tropical Ocean University, College of Marine Science and Technology 2 , Sanya 572022,) Y Ying Chen

Abstract

The hydrating structure of CO32− is investigated based on the solute-correlated (SC) OD/OH stretch bands obtained using Multivariate Curve Resolution on the Raman spectra of D2O/H2O–Na2CO3 solutions at temperatures up to 573 K. At temperatures below 413 K, the SC OD/OH stretch bands display a bimodal profile by the boundary at ∼2360 cm−1/∼3190 cm−1. As temperature increases over 433 K, the ∼2290 cm−1/∼3060 cm−1 peak is weakened and the bands get sunken around 2610 cm−1/3590 cm−1 above ∼473 K, making the 2670 cm−1/3635 cm−1 mode a separate peak at 573 K. The SC OH stretch main peak shifts by ∼120 cm−1 when temperature rises over 493 K but the SC OD stretch main peak remains at a nearly unchanged position because more HCO3− formed in H2O than DCO3− in D2O leads to less CO32−–H2O interactions than CO32−–D2O interactions above 453 K. These spectral features support a temperature-dependent hydrating water structure around CO32− balanced by the electrostatic, CO32−⋯H/D–O·and O–H/D⋯O hydrogen bonding interactions. Due to the strong electrostatics from CO32−, the dominated hydrogen bonding configuration among CO32− hydrated water is tetrahedral instead of single donor (SD) and single hydrogen-bond water (SHW), in contrast to the situations for SO42− and Cl−. CO32− changes from water structure breaker to water structure maker as temperature rises above ∼353 K where the tetrahedrality of hydrating water exceeds that in bulk water.

Article Details

Volume / Issue Vol. 163, Issue 18
Published November 14, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (4)

Q

Qingcheng Hu

Inner Mongolia University of Science and Technology, College of Mining and Coal 1 , Baotou 014010,

Y

Yajie Ma

X

Xiang’en Wu

Hainan Tropical Ocean University, College of Marine Science and Technology 2 , Sanya 572022,

Y

Ying Chen