Conductive Metal–Organic Frameworks: Mechanisms, Design Strategies and Recent Advances
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Title
Conductive Metal–Organic Frameworks: Mechanisms, Design Strategies and Recent Advances
Authors
Keywords
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Journal
Topics in Current Chemistry
Volume 378, Issue 2, Pages -
Publisher
Springer Science and Business Media LLC
Online
2020-02-24
DOI
10.1007/s41061-020-0289-5
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- A Water-Stable Metal–Organic Framework with Highly Acidic Pores for Proton-Conducting Applications
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- Proton-Conductive Magnetic Metal–Organic Frameworks, {NR3(CH2COOH)}[MaIIMbIII(ox)3]: Effect of Carboxyl Residue upon Proton Conduction
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- Methane Storage in Metal–Organic Frameworks: Current Records, Surprise Findings, and Challenges
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- Tunable Electrical Conductivity in Metal-Organic Framework Thin-Film Devices
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- Fluorous Metal-Organic Frameworks with Enhanced Stability and High H2/CO2 Storage Capacities
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- Magnesium Nanocrystals Embedded in a Metal-Organic Framework: Hybrid Hydrogen Storage with Synergistic Effect on Physi- and Chemisorption
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- A Water-Stable Porphyrin-Based Metal-Organic Framework Active for Visible-Light Photocatalysis
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- Correlation between coordinated water content and proton conductivity in Ca–BTC-based metal–organic frameworks
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- New Porous Crystals of Extended Metal-Catecholates
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- Investigation of post-grafted groups of a porous coordination polymer and its proton conduction behavior
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- High Charge Mobility in a Tetrathiafulvalene-Based Microporous Metal–Organic Framework
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- Coordination-Network-Based Ionic Plastic Crystal for Anhydrous Proton Conductivity
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- Promotion of Low-Humidity Proton Conduction by Controlling Hydrophilicity in Layered Metal–Organic Frameworks
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- Imparting High Proton Conductivity to a Metal–Organic Framework Material by Controlled Acid Impregnation
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- Inherent Proton Conduction in a 2D Coordination Framework
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- Light-Harvesting and Ultrafast Energy Migration in Porphyrin-Based Metal–Organic Frameworks
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- Theoretical Studies on Proton Transfer among a High Density of Acid Groups: Surface of Zirconium Phosphate with Adsorbed Water Molecules
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- A Solid Lithium Electrolyte via Addition of Lithium Isopropoxide to a Metal–Organic Framework with Open Metal Sites
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- Oxalate-Bridged Bimetallic Complexes {NH(prol)3}[MCr(ox)3] (M = MnII, FeII, CoII; NH(prol)3+= Tri(3-hydroxypropyl)ammonium) Exhibiting Coexistent Ferromagnetism and Proton Conduction
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- Anhydrous proton conduction at 150 °C in a crystalline metal–organic framework
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