المساق
arXiv 2010-05-28 0 مشاهدة

Unusual Phase Behavior of Confined Heavy Water

Zhang, Yang · Faraone, Antonio · Kamitakahara, William A. · Liu, Kao-Hsiang · Mou, Chung-Yuan · Leão, Juscelino B. · Chang, Sung · Chen, Sow-Hsin

الأصل · EN

Many of the anomalous properties of water are amplified in the deeply supercooled region. Here we present neutron scattering measurements of the density of heavy water confined in a nanoporous silica matrix MCM-41-S (≈15 Å pore diameter), namely, the equation of state ρ(T,P), in a temperature-pressure range, from 300 K to 130 K and from 1 bar to 2900 bar, where bulk water will crystalize. A sudden change of slope in the otherwise continuous density profile (a "kink") is observed below a certain pressure Pc; however, this feature is absent above Pc. Instead, a hysteresis phenomenon in the density profiles between the warming and cooling scans becomes prominent above Pc. Hence, the data can be interpreted as a line of apparent 2nd-order phase transition at low pressures evolving into a line of 1st-order phase transition at high pressures. If so, the existence of a "tricritical point" at Pc ≈ 1500 bar, Tc ≈ 210 K becomes another possible scenario to explain the exceptionally rich phase behavior of low-temperature confined water.

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