88 results on '"Thallapally, Praveen K."'
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2. High-Performance Porous Organic Polymers for Environmental Remediation of Toxic Gases
3. Enhanced Iodine Capture Using a Postsynthetically Modified Thione–Silver Zeolitic Imidazole Framework.
4. Enhanced Iodine Capture Using a Postsynthetically Modified Thione–Silver Zeolitic Imidazole Framework
5. Aluminum-based microporous metal–organic framework for noble gas separation.
6. Porous Organic Cages CC3 and CC2 as Adsorbents for the Separation of Carbon Dioxide from Nitrogen and Hydrogen.
7. Understanding the Adsorption of Noble Gases in Metal–Organic Frameworks Using Diffuse Reflectance Infrared Fourier Transform Spectroscopy.
8. Porous Organic Cages CC3 and CC2 as Adsorbents for the Separation of Carbon Dioxide from Nitrogen and Hydrogen
9. Multifunctional Two-Dimensional Metal–Organic Frameworks for Radionuclide Sequestration and Detection.
10. PoreMatMod.jl: Julia Package for in SilicoPostsynthetic Modification of Crystal Structure Models
11. Synthesis of High-Quality Mg-MOF-74 Thin Films via Vapor-Assisted Crystallization.
12. Understanding the Adsorption of Noble Gases in Metal–Organic Frameworks Using Diffuse Reflectance Infrared Fourier Transform Spectroscopy
13. Multifunctional Two-Dimensional Metal–Organic Frameworks for Radionuclide Sequestration and Detection
14. Molecular Intermediate in the Directed Formation of a Zeolitic Metal–Organic Framework.
15. Metal–Organic Framework–Polyacrylonitrile Composite Beads for Xenon Capture.
16. Controlling Metal–Organic Framework/ZnO Heterostructure Kinetics through Selective Ligand Binding to ZnO Surface Steps.
17. Synthesis of High-Quality Mg-MOF-74 Thin Films viaVapor-Assisted Crystallization
18. Molecular Intermediate in the Directed Formation of a Zeolitic Metal–Organic Framework
19. Metal–Organic Framework–Polyacrylonitrile Composite Beads for Xenon Capture
20. Controlling Metal–Organic Framework/ZnO Heterostructure Kinetics through Selective Ligand Binding to ZnO Surface Steps
21. Postsynthetic Oxidation of the Coordination Site in a Heterometallic Metal–Organic Framework: Tuning Catalytic Behaviors
22. Direct Observation of Li+ Ions Trapped in a Mg2+-Templated Metal–Organic Framework.
23. Investigating CO2 Sorption in SIFSIX-3‑M (M = Fe, Co, Ni, Cu, Zn) through Computational Studies.
24. Identification of Reaction Sites on Metal–Organic Framework-Based Asymmetric Catalysts for Carbonyl–Ene Reactions.
25. Hyper-Cross-linked Porous Organic Frameworks with Ultramicropores for Selective Xenon Capture.
26. Time Dependent Structural Evolution of Porous Organic Cage CC3.
27. Direct Observation of Li+Ions Trapped in a Mg2+-Templated Metal–Organic Framework
28. Investigating CO2Sorption in SIFSIX-3-M (M = Fe, Co, Ni, Cu, Zn) through Computational Studies
29. Hyper-Cross-linked Porous Organic Frameworks with Ultramicropores for Selective Xenon Capture
30. Fine-Tuning Microporosity of Crystalline Vanadomolybdate Frameworks for Selective Adsorptive Separation of Kr from Xe
31. Auxiliary Ligand-Dependent Assembly of Several Ni/Ni−Cd Compounds with N2O2Donor Tetradentate Symmetrical Schiff Base Ligand
32. Prussian Blue Analogues for CO2and SO2Capture and Separation Applications
33. Reduced Magnetism in Core-Shell Magnetite@MOF Composites.
34. Ultralow Parasitic Energy for Postcombustion CO2 Capture Realized in a Nickel Isonicotinate Metal-Organic Framework with Excellent Moisture Stability.
35. Highly Permeable AlPO-18 Membranes for N2/CH4 Separation.
36. Zeolitic Imidazolate Framework-8 (ZIF-8) Membranes for Kr/Xe Separation.
37. Ultralow Parasitic Energy for Postcombustion CO2 Capture Realized in a Nickel Isonicotinate Metal-Organic Framework with Excellent Moisture Stability.
38. Iodine Adsorption in Metal Organic Frameworks in the Presence of Humidity
39. Kr/Xe Separation over a Chabazite Zeolite Membrane.
40. Chalcogenide Aerogels as Sorbents for Noble Gases (Xe, Kr)
41. Ultraporous, Water Stable, and Breathing Zirconium-Based Metal-Organic Frameworks with ftw Topology.
42. Direct Observation of Xe and Kr Adsorption in a Xe-Selective Microporous Metal--Organic Framework.
43. Potential of Metal–Organic Frameworks for Separationof Xenon and Krypton.
44. Coordination Covalent Frameworks: A New Route for Synthesis and Expansion of Functional Porous Materials
45. A Two-ColumnMethod for the Separation of Kr and Xefrom Process Off-Gases.
46. Simultaneous in SituX-ray Diffraction and Calorimetric Studies as a Tool To Evaluate Gas Adsorption in Microporous Materials
47. Metal–Organic Frameworksfor Removal of Xeand Kr from Nuclear Fuel Reprocessing Plants.
48. Selective Metal Cation Capture by Soft Anionic Metal-Organic Frameworks via Drastic Single-Crystal-to-Single-Crystal Transformations.
49. Switching Kr/Xe Selectivity with Temperature in a Metal-Organic Framework.
50. Highly Selective Carbon Dioxide Uptake by [Cu(bpy-n)2(SiF6)] (bpy-1 = 4,4'-Bipyridine; bpy-2 = 1/2-Bis(4-pyridyl)ethene).
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