After ascertaining that the C-p of water confined to 1.1 nm diameter pores had been used to reach the conjecture for a lambda-transition in supercooled bulk water, we argue that only three H2O molecules can fit across the 1.1 nm diameter pore. Two of these form a (one-molecule thick) nanoshell hydrogen bonded to the SiO2 pore wall. Hydrogen bonding or cooperative motions of the remaining one H2O molecule would not produce a "lambda-type transition.".

Does water need a lambda-type transition?

MALLAMACE, Francesco
2009-01-01

Abstract

After ascertaining that the C-p of water confined to 1.1 nm diameter pores had been used to reach the conjecture for a lambda-transition in supercooled bulk water, we argue that only three H2O molecules can fit across the 1.1 nm diameter pore. Two of these form a (one-molecule thick) nanoshell hydrogen bonded to the SiO2 pore wall. Hydrogen bonding or cooperative motions of the remaining one H2O molecule would not produce a "lambda-type transition.".
2009
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11570/1893776
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