Published 2016 | Version v1
Journal article

Confined Water in Layered Silicates: The Origin of Anomalous Thermal Expansion Behavior in Calcium-Silicate-Hydrates

  • 1. University of California, Los Angeles, CA (United States)
  • 2. Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)
  • 3. Arizona State University, Tempe, AZ (United States)

Description

Water, under conditions of nanoscale confinement, exhibits anomalous dynamics, and enhanced thermal deformations, which may be further enhanced when such water is in contact with hydrophilic surfaces. Such heightened thermal deformations of water could control the volume stability of hydrated materials containing nanoconfined structural water. Understanding and predicting the thermal deformation coefficient (TDC, often referred to as the CTE, coefficient of thermal expansion), which represents volume changes induced in materials under conditions of changing temperature, is of critical importance for hydrated solids including: hydrogels, biological tissues, and calcium silicate hydrates, as changes in their volume can result in stress development, and cracking. By pioneering atomistic simulations, we examine the physical origin of thermal expansion in calcium-silicate-hydrates (C–S–H), the binding agent in concrete that is formed by the reaction of cement with water. We report that the TDC of C–S–H shows a sudden increase when the CaO/SiO2 (molar ratio; abbreviated as Ca/Si) exceeds 1.5. This anomalous behavior arises from a notable increase in the confinement of water contained in the C–S–H's nanostructure. We identify that confinement is dictated by the topology of the C–S–H's atomic network. Altogether, the results suggest that thermal deformations of hydrated silicates can be altered by inducing compositional changes, which in turn alter the atomic topology and the resultant volume stability of the solids.

Availability note (English)

Available from http://www.osti.gov/pages/biblio/1394590; DOE Accepted Manuscript full text, or the publishers Best Available Version will be available free of charge after the embargo period

Additional details

Additional titles

Augmented title (English)
KEYWORDS: ATOMISTIC SIMULATION; CONFINEMENT; SILICATES; THERMAL EXPANSION; TOPOLOGY

Publishing Information

Journal Title
ACS Applied Materials and Interfaces
Journal Volume
8
Journal Issue
51
Journal Page Range
p. 35621-35627
ISSN
1944-8244

Optional Information

Contract/Grant/Project number
AC05-00OR22725
Funding organization
USDOE (United States)
Secondary number(s)
OSTIID--1394590