Johannes Gorges
@jogorges.bsky.social
52 followers
28 following
9 posts
PhD student | computational chemist @GrimmeLab @ @UniBonn
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Johannes Gorges
@jogorges.bsky.social
· Sep 8
GitHub - grimme-lab/QCxMS2: Program package for the quantum mechanical calculation of EI mass spectra using automated reaction network exploration
Program package for the quantum mechanical calculation of EI mass spectra using automated reaction network exploration - grimme-lab/QCxMS2
github.com
Johannes Gorges
@jogorges.bsky.social
· Sep 8
Evaluation of the QCxMS2 Method for the Calculation of Collision-Induced Dissociation Spectra via Automated Reaction Network Exploration
Collision-induced dissociation mass spectrometry (CID-MS) is an important tool in analytical chemistry for the structural elucidation of unknown compounds. The theoretical prediction of the CID spectra plays a critical role in supporting and accelerating this process. To this end, we adapt the recently developed QCxMS2 program originally designed for the calculation of electron ionization (EI) spectra to enable the computation of CID-MS. To account for the fragmentation conditions characteristic of CID within the automated reaction network discovery approach of QCxMS2 we adapted the internal energy distribution to match the experimental conditions. This distribution can be adjusted via a single parameter to approximate various activation settings, thereby eliminating the need for explicit simulations of the collisional process. We evaluate our approach on a test set of 13 organic molecules with diverse functional groups, compiled specifically for this study. All reference spectra were recorded consistently under the same measurement conditions, including both CID and higher-energy collisional dissociation (HCD) modes. Overall, QCxMS2 achieves a good average entropy similarity score (ESS) of 0.687 for the HCD spectra and 0.773 for the CID spectra. The direct comparison to experimental data demonstrates that the QCxMS2 approach, even without explicit modeling of collisions, is generally capable of computing both CID and HCD spectra with reasonable accuracy and robustness. This highlights its potential as a valuable tool for integration into structure elucidation workflows in analytical mass spectrometry.
doi.org
Johannes Gorges
@jogorges.bsky.social
· Mar 7
Johannes Gorges
@jogorges.bsky.social
· Mar 7
QCxMS2 – a program for the calculation of electron ionization mass spectra via automated reaction network discovery
We present a new fully-automated computational workflow for the calculation of electron ionization mass spectra by automated reaction network discovery, transition state theory and Monte-Carlo simulat...
pubs.rsc.org
Johannes Gorges
@jogorges.bsky.social
· Feb 5
GitHub - grimme-lab/QCxMS2: Program package for the quantum mechanical calculation of EI mass spectra using automated reaction network exploration
Program package for the quantum mechanical calculation of EI mass spectra using automated reaction network exploration - grimme-lab/QCxMS2
github.com
Reposted by Johannes Gorges
Johannes Gorges
@jogorges.bsky.social
· Jan 17
Reliable prediction of association (free) energies of supramolecular complexes with heavy main group elements – the HS13L benchmark set
We introduce a set of 13 supramolecular complexes featuring diverse non-covalent interactions with heavy main group elements (Zn, As, Se, Te, Br, I), high charges (−2 up to +4), and large systems with...
doi.org
Johannes Gorges
@jogorges.bsky.social
· Jan 17
Towards understanding solvation effects on the conformational entropy of non-rigid molecules
The absolute molecular entropy is a fundamental quantity for the accurate description of thermodynamic properties. For non-rigid molecules, a substantial part of the entropy can be attributed to a con...
doi.org