Duchstein P, Macht M, Zahn D (2025)
Publication Type: Journal article
Publication year: 2025
Book Volume: 27
Pages Range: 1392-1398
Journal Issue: 10
DOI: 10.1039/d4ce01292e
We demonstrate the application of the ‘instantaneous pK’ approach to the molecular dynamics simulation of crystallite models exposed to an acidic solvent environment. For this, the bulk solution properties pH and pK are scrutinized into local aspects and effectively characterized for individual molecules of crystal faces, edges and steps, respectively. To illustrate this concept, we introduce two prototype cases: the acid-induced dissociation of i) calcite and ii) carbamazepine (CBZ, form III) drugs. We find acid-induced calcite dissociation follows a rather intuitive mechanism, namely the protonation of crystal edges/steps leading to ion-by-ion dissociation of HCO
APA:
Duchstein, P., Macht, M., & Zahn, D. (2025). On the pK of crystal surfaces: molecular modeling of crystallite protonation, local reorganization, and solute dissociation. CrystEngComm, 27(10), 1392-1398. https://doi.org/10.1039/d4ce01292e
MLA:
Duchstein, Patrick, Moritz Macht, and Dirk Zahn. "On the pK of crystal surfaces: molecular modeling of crystallite protonation, local reorganization, and solute dissociation." CrystEngComm 27.10 (2025): 1392-1398.
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