In principle, the development of computational methods for structure and property prediction offers the potential for the in silico design of functional materials. Here, we evaluate the crystal energy landscapes of a series of porous organic cages, for which small changes in chemical structure lead to completely different crystal packing arrangements and, hence, porosity. The differences in crystal packing are not intuitively obvious from the molecular structure, and hence qualitative approaches to crystal engineering have limited scope for designing new materials. We find that the crystal structures and the resulting porosity of these molecular crystals can generally be predicted in silico, such that computational screening of similar comp...
Molecular crystals cannot be designed like macroscopic objects because they do not assemble accordin...
Organic molecules tend to close pack to form dense structures when they are crystallised from organi...
A porous organic cage crystal, α-CC2, shows unexpected adsorption of sulphur hexafluoride (SF6) in i...
In principle, the development of computational methods for structure and property prediction offers ...
In principle, the development of computational methods for structure and property prediction offers ...
The physical properties of 3-D porous solids are defined by their molecular geometry. Hence, precise...
The physical properties of 3-D porous solids are defined by their molecular geometry. Hence, precise...
The physical properties of 3-D porous solids are defined by their molecular geometry. Hence, precise...
Crystal structure prediction methods can enable the in silico design of functional molecular crystal...
The physical properties of 3-D porous solids are defined by their molecular geometry. Hence, precise...
Porous organic cage (POC) solids are porous materials made up of individual porous molecules held to...
Porous organic cage (POC) solids are porous materials made up of individual porous molecules held to...
Most nanoporous solids, such as metal-organic frameworks and zeolites, are composed of extended thre...
Mesoporous molecular crystals have potential applications in separation and catalysis, but they are ...
Mesoporous molecular crystals have potential applications in separation and catalysis, but they are ...
Molecular crystals cannot be designed like macroscopic objects because they do not assemble accordin...
Organic molecules tend to close pack to form dense structures when they are crystallised from organi...
A porous organic cage crystal, α-CC2, shows unexpected adsorption of sulphur hexafluoride (SF6) in i...
In principle, the development of computational methods for structure and property prediction offers ...
In principle, the development of computational methods for structure and property prediction offers ...
The physical properties of 3-D porous solids are defined by their molecular geometry. Hence, precise...
The physical properties of 3-D porous solids are defined by their molecular geometry. Hence, precise...
The physical properties of 3-D porous solids are defined by their molecular geometry. Hence, precise...
Crystal structure prediction methods can enable the in silico design of functional molecular crystal...
The physical properties of 3-D porous solids are defined by their molecular geometry. Hence, precise...
Porous organic cage (POC) solids are porous materials made up of individual porous molecules held to...
Porous organic cage (POC) solids are porous materials made up of individual porous molecules held to...
Most nanoporous solids, such as metal-organic frameworks and zeolites, are composed of extended thre...
Mesoporous molecular crystals have potential applications in separation and catalysis, but they are ...
Mesoporous molecular crystals have potential applications in separation and catalysis, but they are ...
Molecular crystals cannot be designed like macroscopic objects because they do not assemble accordin...
Organic molecules tend to close pack to form dense structures when they are crystallised from organi...
A porous organic cage crystal, α-CC2, shows unexpected adsorption of sulphur hexafluoride (SF6) in i...