Lang, L.; Ravera, E.; Parigi, G.; Luchinat, C.; Neese, F. Theoretical Analysis of the Long-Distance Limit of NMR Chemical Shieldings. The Journal of Chemical Physics2022, 156, 154115.
Lang, L.; Ravera, E.; Parigi, G.; Luchinat, C.; Neese, F. Solution of a Puzzle: High-Level Quantum-Chemical Treatment of Pseudocontact Chemical Shifts Confirms Classic Semiempirical Theory. The Journal of Physical Chemistry Letters2020, 11, 8735–8744.
Lang, L.; Atanasov, M.; Neese, F. Improvement of Ab Initio Ligand Field Theory by Means of Multistate Perturbation Theory. The Journal of Physical Chemistry A2020, 124, 1025–1037.
Lang, L.; Sivalingam, K.; Neese, F. The Combination of Multipartitioning of the Hamiltonian with Canonical Van Vleck Perturbation Theory Leads to a Hermitian Variant of Quasidegenerate N-Electron Valence Perturbation Theory. The Journal of Chemical Physics2020, 152, 014109.
Lang, L.; Neese, F. Spin-Dependent Properties in the Framework of the Dynamic Correlation Dressed Complete Active Space Method. The Journal of Chemical Physics2019, 150, 104104.
Pathak, S.; Lang, L.; Neese, F. A Dynamic Correlation Dressed Complete Active Space Method: Theory, Implementation, and Preliminary Applications. The Journal of Chemical Physics2017, 147, 234109.
Lang, L. Development of New Multistate Multireference Perturbation Theory Methods and Their Application. PhD Thesis, Rheinische Friedrich-Wilhelms-Universität Bonn, Bonn, 2020.
Shalini Yadav, a postdoctoral researcher at the Max-Planck-Institut für Kohlenforschung, has received the Alexander von Humboldt Fellowship to advance her computational chemistry research on enzymes.