Optimal Design of Anion-pillared Metal-organic Frameworks for Gas Separation
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Publisher
Elsevier
Reference8 articles.
1. Prediction of MOF performance in vacuum swing adsorption systems for postcombustion CO2 capture based on integrated molecular simulations, process optimizations, and machine learning models;Burns;Environmental Science & Technology,2020
2. A metal-organic framework–based splitter for separating propylene from propane;Cadiau;Science,2016
3. Topologically guided, automated construction of metal–organic frameworks and their evaluation for energy-related applications;Colón;Crystal Growth & Design,2017
4. A review on anion-pillared metal–organic frameworks (APMOFs) and their composites with the balance of adsorption capacity and separation selectivity for efficient gas separation;Li;Coordination Chemistry Reviews,2022
5. Molecular tectonics: control of interpenetration in cuboid 3-D coordination networks;Lin;CrystEngComm,2011
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