most citedA New Paradigm for Computational Chemistry

1 citations · 1 across the 1 of their papers we have counts for

collaborators

5 papers

physics.chem-ph20261 cited

A New Paradigm for Computational Chemistry

Raphael T. Husistein, Markus Reiher

Computational chemistry has become an indispensable tool for generating data and insights, pervading all branches of experimental chemistry. Its most central concept is the potenti…

quant-ph2025

How to use quantum computers for biomolecular free energies

Jakob Günther, Thomas Weymuth, Moritz Bensberg +18

Free energy calculations are at the heart of physics-based analyses of biochemical processes. They allow us to quantify molecular recognition mechanisms, which determine a wide ran…

physics.chem-ph2025

Machine Learning Enhanced Calculation of Quantum-Classical Binding Free Energies

Moritz Bensberg, Marco Eckhoff, F. Emil Thomasen +10

Binding free energies are a key element in understanding and predicting the strength of protein--drug interactions. While classical free energy simulations yield good results for m…

physics.chem-ph2025

Hierarchical quantum embedding by machine learning for large molecular assemblies

Moritz Bensberg, Marco Eckhoff, Raphael T. Husistein +9

We present a quantum-in-quantum embedding strategy coupled to machine learning potentials to improve on the accuracy of quantum-classical hybrid models for the description of large…

cs.LG2025

NEAR: A Training-Free Pre-Estimator of Machine Learning Model Performance

Raphael T. Husistein, Markus Reiher, Marco Eckhoff

Artificial neural networks have been shown to be state-of-the-art machine learning models in a wide variety of applications, including natural language processing and image recogni…