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Polymorphism and Phase Stability of Hydrated Magnesium Carbonate Nesquehonite MgCO3·3H2O: Negative Axial Compressibility and Thermal Expansion in a Cementitious Material.
Santamaría-Pérez, David; Chuliá-Jordán, Raquel; Gonzalez-Platas, Javier; Otero-de-la-Roza, Alberto; Ruiz-Fuertes, Javier; Pellicer-Porres, Julio; Oliva, Robert; Popescu, Catalin.
Afiliação
  • Santamaría-Pérez D; Departamento de Física Aplicada-ICMUV, MALTA Consolider Team, Universitat de València, Valencia 46100, Spain.
  • Chuliá-Jordán R; Departamento de Didáctica de las Ciencias Experimentales y Sociales, Universitat de Valencia, Valencia 46022, Spain.
  • Gonzalez-Platas J; Departamento Física, Instituto Universitario de Estudios Avanzados en Física Atómica, Molecular y Fotónica (IUDEA), MALTA Consolider Team, Universidad de La Laguna, Tenerife 38204, Spain.
  • Otero-de-la-Roza A; Departamento de Química Física y Analítica, Facultad de Química, MALTA Consolider Team, Universidad de Oviedo, Oviedo 33006, Spain.
  • Ruiz-Fuertes J; DCITIMAC, MALTA Consolider Team, Universidad de Cantabria, Santander 39005, Spain.
  • Pellicer-Porres J; Departamento de Física Aplicada-ICMUV, MALTA Consolider Team, Universitat de València, Valencia 46100, Spain.
  • Oliva R; GEO3BCN-Geosciences Barcelona, CSIC, Barcelona 08028, Spain.
  • Popescu C; CELLS-ALBA Synchrotron Light Facility, Cerdanyola del Vallés, Barcelona 08290, Spain.
Cryst Growth Des ; 24(3): 1159-1169, 2024 Feb 07.
Article em En | MEDLINE | ID: mdl-38344675
ABSTRACT
The P-T phase diagram of the hydrated magnesium carbonate nesquehonite (MgCO3·3H2O) has not been reported in the literature. In this paper, we present a joint experimental and computational study of the phase stability and structural behavior of this cementitious material at high-pressure and high-temperature conditions using in situ single-crystal and synchrotron powder X-ray diffraction measurements in resistive-heated diamond anvil cells plus density functional theory calculations. Our results show that nesquehonite undergoes two pressure-induced phase transitions at 2.4 (HP1) and 4.0 GPa (HP2) at ambient temperature. We have found negative axial compressibility and thermal expansivity values, likely related to the directionality of the hydrogen bonds. The equations of state of the different phases have been determined. All the room-temperature compression effects were reversible. Heating experiments at 0.7 GPa show a first temperature-induced decomposition at 115 °C, probably into magnesite and a MgCO3·4H2O phase.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article