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Showing 1 to 7 of 7 for “"conductive MOFs"”.

  1. Electrically conductive porous catecholate metal-organic frameworks

    Metal-organic frameworks (MOFs) are porous crystalline solids made up from countless possible combinations of organic ligands and metal nodes. MOF research has seen rapid expansion in the past two decades owing to the high surface areas of MOFs – and since the first studies in the mid-1990s, these …

    mit Repository record for Electrically conductive porous catecholate metal-organic frameworks (opens in a new tab)

  2. Electrical conduction in metal-organic frameworks

    Metal-organic frameworks (MOFs) are microporous/mesoporous solid state materials with long-range order, synthetic designability, multifunctionality, and great tunability. Their generally low electrical conductivity and charge mobility hinder applications in electronic and energy storage devices. …

    mit Repository record for Electrical conduction in metal-organic frameworks (opens in a new tab)

  3. Carbon dioxide sensing with 2D conductive metal-organic frameworks

    … (CO₂) using a series of two-dimensional (2D) conductive metal-organic frameworks (MOFs) with amine-based linkers. The 2D MOFs studied here show carbon dioxide sensitivity at concentrations as low as 1000 ppm. The identity of both the metal and ligand affects sensing performance in terms of …

    mit Repository record for Carbon dioxide sensing with 2D conductive metal-organic frameworks (opens in a new tab)

  4. Investigating Layered Electrically Conductive Metal-Organic Frameworks For Supercapacitor Applications

    … society. In recent years, layered electrically conductive metal-organic frameworks (MOFs) have emerged as one of the most promising electrode materials for next-generation supercapacitors. Their crystalline and tuneable structures facilitate structure-performance studies, which are challenging …

    cambridge Repository record for Investigating Layered Electrically Conductive Metal-Organic Frameworks For Supercapacitor Applications (opens in a new tab)

  5. Structure- and Composition-Performance Relationships of Electrically Conductive Metal-Organic Frameworks, Conjugated Porous Organic Polymers, and Fused Aromatics

    … and structural modulability, electrically conductive metal-organic frameworks (MOFs), have drawn increasing attention due to their potential use in a variety of applications including electrochemical energy storage (EES). Although fully conjugated porous organic polymers (POPs) generally …

    mit Repository record for Structure- and Composition-Performance Relationships of Electrically Conductive Metal-Organic Frameworks, Conjugated Porous Organic Polymers, and Fused Aromatics (opens in a new tab)

  6. Charge Transport Physics in Coordination Nanosheets (CONASHs)

    Metal-organic frameworks (MOFs) have emerged as a versatile class of materials with intriguing properties, driven by their modular structure and tuneable functionalities. The insulating nature of most MOFs has hindered their applications which require highly conductive MOFs. A specific type of MOF …

    cambridge Repository record for Charge Transport Physics in Coordination Nanosheets (CONASHs) (opens in a new tab)

  7. Metal-organic frameworks and porous composites for photocatalytic and sensing applications

    … energy critical. Metal-organic frameworks (MOFs) promise a solution. MOFs are a class of porous and crystalline materials comprised of inorganic building units, such as metals/metal oxide clusters, linked through organic ligands. As a way of producing green hydrogen, MOFs can be employed as …

    cambridge Repository record for Metal-organic frameworks and porous composites for photocatalytic and sensing applications (opens in a new tab)