Brute-force compute campaigns relying on demanding ab initio calculations routinely search for previously un- known materials in chemical compound space (CCS), the vast set of all conceivable stable combinations of elements and structural configurations. Here, we demonstrate that four-dimensional chirality arising from antisymmetry of alchemical perturbations dissects CCS and defines approximate ranks, which reduce its formal dimensionality and break down its combinatorial scaling. The resulting "alchemical" enantiomers have the same electronic energy up to the third order, independent of respective covalent bond topology, imposing relevant constraints on chemical bonding. Alchemical chirality deepens our understanding of CCS and enables th...
Chirality refers to the absence of a mirror image related symmetry in objects, materials and molecul...
Topology is the study of deformations of geometric figures. Chemistry is the study of molecular stru...
High-throughput computational materials design promises to greatly accelerate the process of discove...
In silico design of new molecules and materials with desirable quantum properties by high-throughput...
Computer-driven molecular design combines the principles of chemistry, physics, and artificial intel...
Chemical compound space (CCS), the set of all theoretically conceivable combinations of chemical ele...
Knowledge of three-dimensional (3D) molecular structures is crucial for scientific advances in field...
peer reviewedWe present a symmetry-based systematic approach to explore the structural and compositi...
We use the newly introduced spanning stress tensor trajectory $U_{\sigma}$-space construction within...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
We assess the concept of alchemical transformations for predicting how a further and not-tested chan...
Chirality depends on particular symmetries. For crystal structures it describes the absence of mirro...
International audienceChemical compound space (CCS), the set of all theoretically conceivable combin...
Simultaneously accurate and efficient prediction of molecular properties throughout chemical compoun...
Extremely effective cooperative effects operate during the formation of chiral stacks of C3-symmetri...
Chirality refers to the absence of a mirror image related symmetry in objects, materials and molecul...
Topology is the study of deformations of geometric figures. Chemistry is the study of molecular stru...
High-throughput computational materials design promises to greatly accelerate the process of discove...
In silico design of new molecules and materials with desirable quantum properties by high-throughput...
Computer-driven molecular design combines the principles of chemistry, physics, and artificial intel...
Chemical compound space (CCS), the set of all theoretically conceivable combinations of chemical ele...
Knowledge of three-dimensional (3D) molecular structures is crucial for scientific advances in field...
peer reviewedWe present a symmetry-based systematic approach to explore the structural and compositi...
We use the newly introduced spanning stress tensor trajectory $U_{\sigma}$-space construction within...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
We assess the concept of alchemical transformations for predicting how a further and not-tested chan...
Chirality depends on particular symmetries. For crystal structures it describes the absence of mirro...
International audienceChemical compound space (CCS), the set of all theoretically conceivable combin...
Simultaneously accurate and efficient prediction of molecular properties throughout chemical compoun...
Extremely effective cooperative effects operate during the formation of chiral stacks of C3-symmetri...
Chirality refers to the absence of a mirror image related symmetry in objects, materials and molecul...
Topology is the study of deformations of geometric figures. Chemistry is the study of molecular stru...
High-throughput computational materials design promises to greatly accelerate the process of discove...