Magnetic Field Control of Micropore Formation in [Zn2(Oxac)(Taz)2]·(H2O)x
Author:
Affiliation:
1. Department of Chemistry, Faculty of Science, Shinshu University
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
http://www.journal.csj.jp/doi/pdf/10.1246/cl.151150
Reference16 articles.
1. Three-Dimensional Framework with Channeling Cavities for Small Molecules:{[M2(4, 4′-bpy)3(NO3)4]·xH2O}n(M Co, Ni, Zn)
2. Establishing Microporosity in Open Metal−Organic Frameworks: Gas Sorption Isotherms for Zn(BDC) (BDC = 1,4-Benzenedicarboxylate)
3. Functional Porous Coordination Polymers
4. Guest-Specific Function of a Flexible Undulating Channel in a 7,7,8,8-Tetracyano-p-quinodimethane Dimer-Based Porous Coordination Polymer
5. Metal−Organic Frameworks with Exceptionally High Capacity for Storage of Carbon Dioxide at Room Temperature
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1. Magnetic and thermodynamic control of coordination network crystallization using a hexaazaphenalene-based ligand;Chemical Communications;2024
2. A new route for the syntheses of coordination polymers using magnetic influence: syntheses, crystal structures and fluorescence properties;IUCrJ;2023-09-18
3. The Role of Micropores and Amine Groups in Preferential CO2 Adsorptivity of Porous Zn-Coordination Polymers Comprising Mixed Ligands of Triazole and Amino Triazole;Oriental Journal of Chemistry;2019-02-25
4. Synthesis of Porous Coordination Polymers Comprising Mixed Ligands of Triazole and Amino Triazole under Magnetic Fields and Its Effects in Enhance CO2 Adsorptivity;Russian Journal of Applied Chemistry;2018-11
5. Micropore Formation of [Zn2(Oxac) (Taz)2]·(H2O)2.5 via CO2 Adsorption;Langmuir;2017-01-12
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