There is a clear need for a practical and mathematically rigorous description of local structure in inorganic compounds so that structures and chemistries can be easily compared across large data sets. Here a method for decomposing crystal structures into substructures is given, and a similarity function between those substructures is defined. The similarity function is based on both geometric and chemical similarity. This construction allows for large-scale data mining of substructural properties, and the analysis of substructures and void spaces within crystal structures. The method is validated via the prediction of Li-ion intercalation sites for the oxides. Tested on databases of known Li-ion-containing oxides, the method reproduces all...
The prediction of energetically stable crystal structures formed by a given chemical composition is ...
The selection of the elements to combine delimits the possible outcomes of synthetic chemistry becau...
A method is described for the identification of similar "supramolecular constructs" (sub-components ...
A new method for assessing the similarity of material compositions is described. A similarity measur...
This paper develops a new continuous approach to a similarity between periodic lattices of ideal cry...
A new method for assessing the similarity of crystal structures is described. A similarity measure i...
Structure characterization and classification is frequently based on local environment information o...
Structure characterization and classification is frequently based on local environment information o...
Structure–property relationships form the basis of many design rules in materials science, including...
We review the current techniques used in the prediction of crystal structures and their surfaces and...
This thesis addresses one of the fundamental questions in materials crystal chemistry, namely why do...
The discovery of new materials is hampered by the lack of efficient approaches to the exploration of...
A new methodology for definitively evaluating the structural similarity between different phases in ...
The computational design of new and interesting inorganic materials is still an ongoing challenge. ...
This article shows, the use of supervised self-organizing maps (SOMs) to explore large numbers of ex...
The prediction of energetically stable crystal structures formed by a given chemical composition is ...
The selection of the elements to combine delimits the possible outcomes of synthetic chemistry becau...
A method is described for the identification of similar "supramolecular constructs" (sub-components ...
A new method for assessing the similarity of material compositions is described. A similarity measur...
This paper develops a new continuous approach to a similarity between periodic lattices of ideal cry...
A new method for assessing the similarity of crystal structures is described. A similarity measure i...
Structure characterization and classification is frequently based on local environment information o...
Structure characterization and classification is frequently based on local environment information o...
Structure–property relationships form the basis of many design rules in materials science, including...
We review the current techniques used in the prediction of crystal structures and their surfaces and...
This thesis addresses one of the fundamental questions in materials crystal chemistry, namely why do...
The discovery of new materials is hampered by the lack of efficient approaches to the exploration of...
A new methodology for definitively evaluating the structural similarity between different phases in ...
The computational design of new and interesting inorganic materials is still an ongoing challenge. ...
This article shows, the use of supervised self-organizing maps (SOMs) to explore large numbers of ex...
The prediction of energetically stable crystal structures formed by a given chemical composition is ...
The selection of the elements to combine delimits the possible outcomes of synthetic chemistry becau...
A method is described for the identification of similar "supramolecular constructs" (sub-components ...