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Investigation of the structure and dynamics of amorphous calcium carbonate by NMR : stabilization by poly-aspartate and comparison to monohydrocalcite

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2025

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Deutsche Forschungsgemeinschaft (DFG): 321027114
Deutsche Forschungsgemeinschaft (DFG): 450148812
Deutsche Forschungsgemeinschaft (DFG): 454252029

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Physical Chemistry Chemical Physics. Royal Society of Chemistry (RSC). 2025(27), S. 10348-10363. ISSN 1463-9076. eISSN 1463-9084. Verfügbar unter: doi: 10.1039/d5cp01002k

Zusammenfassung

The chemical environments of the 1 H and 13 C nuclei in amorphous calcium carbonate are surprisingly similar to those in monohydrocalcite. H-bonds, however, have weakened and permit 180° flips of the structural water molecules.

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540 Chemie

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Investigation of the structure and dynamics of amorphous calcium carbonate by NMR : stabilization by poly-aspartate and comparison to monohydrocalcite
(2025) Vinod Kumar, Sanjay; Smith-Penzel, Albert; Redrouthu, Venkata SubbRao; Gindele, Maxim Benjamin; Gebauer, Denis; Mathies, Guinevere

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ISO 690VINOD KUMAR, Sanjay, Albert A. SMITH-PENZEL, Venkata SubbaRao REDROUTHU, Maxim B. GINDELE, Denis GEBAUER, Guinevere MATHIES, 2025. Investigation of the structure and dynamics of amorphous calcium carbonate by NMR : stabilization by poly-aspartate and comparison to monohydrocalcite. In: Physical Chemistry Chemical Physics. Royal Society of Chemistry (RSC). 2025(27), S. 10348-10363. ISSN 1463-9076. eISSN 1463-9084. Verfügbar unter: doi: 10.1039/d5cp01002k
BibTex
@article{VinodKumar2025Inves-74054,
  title={Investigation of the structure and dynamics of amorphous calcium carbonate by NMR : stabilization by poly-aspartate and comparison to monohydrocalcite},
  year={2025},
  doi={10.1039/d5cp01002k},
  number={27},
  issn={1463-9076},
  journal={Physical Chemistry Chemical Physics},
  pages={10348--10363},
  author={Vinod Kumar, Sanjay and Smith-Penzel, Albert A. and Redrouthu, Venkata SubbaRao and Gindele, Maxim B. and Gebauer, Denis and Mathies, Guinevere}
}
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