19 results on '"Deng, Cheng-Hua"'
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2. Cross‐Linking CdSO4‐Type Nets with Hexafluorosilicate Anions to Form an Ultramicroporous Material for Efficient C2H2/CO2 and C2H2/C2H4 Separation.
3. Efficient propyne/propadiene separation by microporous crystalline physiadsorbents
4. Shape‐Memory Effect Enabled by Ligand Substitution and CO2Affinity in a Flexible SIFSIX Coordination Network
5. Shape‐Memory Effect Enabled by Ligand Substitution and CO2 Affinity in a Flexible SIFSIX Coordination Network.
6. Crystal engineering of ionic cocrystals comprising Na/K salts of hesperetin with hesperetin molecules and solubility modulation
7. Highly efficient conversion of CO2intoN-formamides catalyzed by a noble-metal-free aluminum-based MOF under mild conditions
8. Highly efficient conversion of CO2 into N-formamides catalyzed by a noble-metal-free aluminum-based MOF under mild conditions.
9. Structural Design of Mn-Metal–Organic Frameworks toward Highly Efficient Solvent-Free Cycloaddition of CO2
10. Reversible Switching between Nonporous and Porous Phases of a New SIFSIX Coordination Network Induced by a Flexible Linker Ligand
11. Synthesis and characterization of perfluoro[1-(2-fluorosulfonyl)ethoxy]ethyl end-capped styrene oligomers
12. Tuning the Gate‐Opening Pressure in a Switching pcu Coordination Network, X‐pcu‐5‐Zn, by Pillar‐Ligand Substitution
13. Fluorinated nitroxides as ESR probes of solvation
14. Binuclear molybdenum alkoxide as the versatile catalyst for the conversion of carbon dioxide
15. The electrochemical discrimination of pinene enantiomers by a cyclodextrin metal–organic framework
16. Cross-Linking CdSO 4 -Type Nets with Hexafluorosilicate Anions to Form an Ultramicroporous Material for Efficient C 2 H 2 /CO 2 and C 2 H 2 /C 2 H 4 Separation.
17. Shape-Memory Effect Enabled by Ligand Substitution and CO 2 Affinity in a Flexible SIFSIX Coordination Network.
18. Highly efficient conversion of CO 2 into N -formamides catalyzed by a noble-metal-free aluminum-based MOF under mild conditions.
19. Tuning the Gate-Opening Pressure in a Switching pcu Coordination Network, X-pcu-5-Zn, by Pillar-Ligand Substitution.
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