The discovery of new materials is hampered by the lack of efficient approaches to the exploration of both the large number of possible elemental compositions for such materials, and of the candidate structures at each composition1. For example, the discovery of inorganic extended solid structures has relied on knowledge of crystal chemistry coupled with time-consuming materials synthesis with systematically varied elemental ratios2,3. Computational methods have been developed to guide synthesis by predicting structures at specific compositions4,5,6 and predicting compositions for known crystal structures7,8, with notable successes9,10. However, the challenge of finding qualitatively new, experimentally realizable compounds, with crystal str...
Predicting unknown inorganic compounds and their crystal structure is a critical step of high-throug...
The act of materials discovery continues to grow in importance, as new materials are needed for a va...
Recent transformative advances in computing power and algorithms have made computational chemistry c...
Today, we find new materials by systematic experimental investigation of the phases that form by com...
The discovery of new multicomponent inorganic compounds can provide direct solutions to many scienti...
Forming a four-component compound from the first 103 elements of the periodic table results in more ...
SummaryForming a four-component compound from the first 103 elements of the periodic table results i...
O nce the crystal structure of a chemical substance is known, many prop-erties can be predicted reli...
This thesis addresses one of the fundamental questions in materials crystal chemistry, namely why do...
The discovery of multicomponent inorganic compounds can provide direct solutions to scientific and e...
The selection of the elements to combine delimits the possible outcomes of synthetic chemistry becau...
Virtual high throughput screening, typically driven by first-principles, density functional theory c...
Abstract: We are largely unable to predict the composition and crystal structure of new extended str...
The computational design of new and interesting inorganic materials is still an ongoing challenge. ...
Virtual high throughput screening, typically driven by first-principles, density functional theory c...
Predicting unknown inorganic compounds and their crystal structure is a critical step of high-throug...
The act of materials discovery continues to grow in importance, as new materials are needed for a va...
Recent transformative advances in computing power and algorithms have made computational chemistry c...
Today, we find new materials by systematic experimental investigation of the phases that form by com...
The discovery of new multicomponent inorganic compounds can provide direct solutions to many scienti...
Forming a four-component compound from the first 103 elements of the periodic table results in more ...
SummaryForming a four-component compound from the first 103 elements of the periodic table results i...
O nce the crystal structure of a chemical substance is known, many prop-erties can be predicted reli...
This thesis addresses one of the fundamental questions in materials crystal chemistry, namely why do...
The discovery of multicomponent inorganic compounds can provide direct solutions to scientific and e...
The selection of the elements to combine delimits the possible outcomes of synthetic chemistry becau...
Virtual high throughput screening, typically driven by first-principles, density functional theory c...
Abstract: We are largely unable to predict the composition and crystal structure of new extended str...
The computational design of new and interesting inorganic materials is still an ongoing challenge. ...
Virtual high throughput screening, typically driven by first-principles, density functional theory c...
Predicting unknown inorganic compounds and their crystal structure is a critical step of high-throug...
The act of materials discovery continues to grow in importance, as new materials are needed for a va...
Recent transformative advances in computing power and algorithms have made computational chemistry c...