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April 18, 2026Crystal Growth & Design0 citationsOpen Access

Structural Characterization of Tunnel-Structured MgCO 3 ·H 2 O and β-MgCO 3 : Two-Step Topotactic Dehydration of Nesquehonite Using High Pressure

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RYRyo YamaneSSShigeru SueharaYKYoshiki Kiyota

Key Points

  • The aim is to characterize the structural phases of monohydrated magnesium carbonate and its dehydrated form.
  • Synthesized MHMC from nesquehonite at 500 MPa and 100 °C.
  • Characterized MHMC using microelectron diffraction.
  • Dehydrated MHMC to form β-MgCO3, predicted its structure theoretically.
  • Verified the structure of β-MgCO3 using Rietveld refinement of powder X-ray diffraction.
  • Characterized MHMC with a tunnel-type framework structure and specific dimensions.
  • β-MgCO3 verified with distinct dimensions and was based on MHMC's structure.
  • Measured bulk moduli: MHMC at 57.1 GPa and β-MgCO3 at 20.0 GPa.

Abstract

This study achieved the structural characterization of two novel phases: monohydrated magnesium carbonate (MHMC; MgCO3·H2O) and a dehydrated phase of MHMC, a previously unknown crystalline polymorph of MgCO3 (β-MgCO3). MHMC was synthesized from nesquehonite (Nq; MgCO3·3H2O) at 500 MPa and 100 °C, while β-MgCO3 was synthesized by dehydrating MHMC. Due to the fine rod-shaped MHMC and β-MgCO3 crystals, microelectron diffraction was used to characterize the MHMC structure (a = 5.8102(6) Å, b = 5.3759(3) Å, c = 9.259(1) Å, space group: P212121, calculated density: 2.350 g/cm3). The MgCO3 rod modules of Nq were polymerized in the MHMC structure, accompanied by dehydration, and MHMC had a tunnel-type MgCO3 framework structure. The structure of β-MgCO3 was theoretically predicted based on the dehydrated MHMC structure and verified by the Rietveld refinement of the powder X-ray diffraction of β-MgCO3 (a = 5.1730(4) Å, b = 5.1597(5) Å, c = 8.8066(5) Å, space group: P212121, calculated density: 2.383 g/cm3). The calculated bulk moduli of MHMC and β-MgCO3 were 57.1(1) and 20.0(2) GPa, respectively.

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Cite This Study

Yamane et al. (2026) studied this question.

synapsesocial.com/papers/69e31f1a40886becb653e88fhttps://doi.org/10.1021/acs.cgd.5c01676
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Dense Hydrated Magnesium Carbonate MgCO<sub>3</sub>·3H<sub>2</sub>O Phases2024 · 5 citations
  2. 2A Comprehensive Review of the Chemical and Structural Behavior of MgCO₃·3H₂O Nesquehonite: Insights into its Stability and Functionality.2025
  3. 3Phase Evolution of MgO-Nesquehonite Cements2026
  4. 4Filling the gap between lansfordite and nesquehonite: MgCO3·4H2O, a new magnesium carbonate hydrate2026
  5. 5Compressed MgCl<sub>2</sub> Reveals Multiple Pathways to Cotunnite Structures.2026