Heteroanionic materials leverage the advantages offered by two different anions coordinating the same or different cations to realize unanticipated or enhanced electronic, optical, and magnetic responses. Beyond chemical variations offered by the anions, the ability to control the anion order present within a single transition metal polyhedron via anion-sublattice engineering offers a potentially transformative strategy in tuning material properties. The set of design rules for realizing and controlling anion order, however, are incomplete, which is due in part to the limited anion-ordered diversity in known structures. This aspect makes formulating such principles from experiment alone challenging. Here, we demonstrate how computational me...
This work investigates the origins of cation ordering of double perovskites using first-principles t...
Phase transitions are ubiquitous in structurally complex transition metal compounds composed of homo...
Further molecular dynamics calculations have been carried out on sodium, potassium, and rubidium cya...
While cation order–disorder transitions have been achieved in a wide range of materials and provide ...
While cation order–disorder transitions have been achieved in a wide range of materials and provide ...
Over the past few decades, mixed anion compounds have drawn great attention because incorporation of...
The properties of crystalline materials are controlled by their composition and by their structure, ...
International audienceWe study the energetic stability and structural features of bimetallic metal–o...
Materials that exhibit a macroscopic polarization are key for a range of applications but the origin...
This review contains recent developments and new insights in the research on inorganic, crystalline ...
The similar bis-bidentate coordination mode of oxalato and anilato-based ligands is exploited here t...
We study the energetic stability and structural features of bimetallic metal–organic frameworks. Suc...
Examination of the crystal structures of (Me<sub>4</sub>N)(dcnm) (<b>1</b>), (Me<sub>4</sub>N)(dcn...
This work investigates the origins of cation ordering of double perovskites using first-principles t...
Phase transitions are ubiquitous in structurally complex transition metal compounds composed of homo...
Further molecular dynamics calculations have been carried out on sodium, potassium, and rubidium cya...
While cation order–disorder transitions have been achieved in a wide range of materials and provide ...
While cation order–disorder transitions have been achieved in a wide range of materials and provide ...
Over the past few decades, mixed anion compounds have drawn great attention because incorporation of...
The properties of crystalline materials are controlled by their composition and by their structure, ...
International audienceWe study the energetic stability and structural features of bimetallic metal–o...
Materials that exhibit a macroscopic polarization are key for a range of applications but the origin...
This review contains recent developments and new insights in the research on inorganic, crystalline ...
The similar bis-bidentate coordination mode of oxalato and anilato-based ligands is exploited here t...
We study the energetic stability and structural features of bimetallic metal–organic frameworks. Suc...
Examination of the crystal structures of (Me<sub>4</sub>N)(dcnm) (<b>1</b>), (Me<sub>4</sub>N)(dcn...
This work investigates the origins of cation ordering of double perovskites using first-principles t...
Phase transitions are ubiquitous in structurally complex transition metal compounds composed of homo...
Further molecular dynamics calculations have been carried out on sodium, potassium, and rubidium cya...