Publication | Closed Access
Increasing topological diversity during computational “synthesis” of porous crystals: how and why
126
Citations
80
References
2019
Year
EngineeringNanoporous MaterialComputational ChemistryChemistryChemical SensingChemical EngineeringPorous CrystalsCrystal FormationPorous SensorMaterials ScienceMolecular SievingCrystal MaterialCatalysisMolecular EngineeringCrystallographyCrystal Structure DesignApplied PhysicsTopological DiversityMolecular Separation
Effectively tuning the properties of porous crystals could lead to breakthroughs in areas such as molecular separation, chemical sensing, and catalysis.
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