„microporous materials“
Suchergebnisse
1.497 Treffer
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Porous Solids Arising from Synergistic and Competing Modes of Assembly: Combining Coordination Chemistry and Covalent Bond Formation †
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Reverse Engineering of Conjugated Microporous Polymers: Defect Structures of Tetrakis (4‐ethynylphenyl) stannane Networks
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Extreme Confinement of Xenon by Cryptophane‐111 in the Solid State †
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Turn‐On Luminescence Sensing and Real‐Time Detection of Traces of Water in Organic Solvents by a Flexible Metal–Organic Framework †
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Nanoporous Materials Can Tune the Critical Point of a Pure Substance
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A Rod‐Packing Microporous Hydrogen‐Bonded Organic Framework for Highly Selective Separation of C 2 H 2/CO 2 at Room Temperature †
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Microporous Molecular Materials from Dipeptides Containing Non‐proteinogenic Residues
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Amphiphilic Organic–Inorganic Hybrid Zeotype Aluminosilicate like a Nanoporous Crystallized Langmuir–Blodgett Film †
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Superior Metal‐Organic Framework Activation with Dimethyl Ether
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Superior Metal‐Organic Framework Activation with Dimethyl Ether
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Increased Selectivity in CO 2/CH 4 Separation with Mixed‐Matrix Membranes of Polysulfone and Mixed‐MOFs MIL‐101 (Cr) and ZIF‐8
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Modulated Synthesis of Metal‐Organic Frameworks through Tuning of the Initial Oxidation State of the Metal
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Two‐Dimensional Core‐Shelled Porous Hybrids as Highly Efficient Catalysts for the Oxygen Reduction Reaction
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Pd NanocubesZIF‐8: Integration of Plasmon‐Driven Photothermal Conversion with a Metal–Organic Framework for Efficient and Selective Catalysis
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In situ Generation of Reticulate Micropores through Covalent Network/Polymer Nanocomposite Membranes for Reverse‐Selective Separation of Carbon Dioxide
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Recognition of 1,3‐Butadiene by a Porous Coordination Polymer
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Hysteretic Four‐Step Spin Crossover within a Three‐Dimensional Porous Hofmann‐like Material
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Engineering Porous Organic Cage Crystals with Increased Acid Gas Resistance
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Continuous‐Flow Microwave Synthesis of Metal–Organic Frameworks: A Highly Efficient Method for Large‐Scale Production
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Photochemical Reduction of Low Concentrations of CO 2 in a Porous Coordination Polymer with a Ruthenium (II)–CO Complex