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Showing 1 to 7 of 7 for “"MOF-808"”.

  1. Uptake and Reaction Mechanisms of CO, H2O, and the Nerve Agent Simulant, DMMP with Single Atom-Modified Zirconium-based Metal-Organic Frameworks

    … various environments, metal-organic frameworks (MOFs) were targeted as a class of materials that may provide enhanced protection. Due to their ultrahigh surface area, permanent porosity, and functional tunability at both the inorganic node and organic linkers, MOFs have shown to be more effective …

    vt Repository record for Uptake and Reaction Mechanisms of CO, H2O, and the Nerve Agent Simulant, DMMP with Single Atom-Modified Zirconium-based Metal-Organic Frameworks (opens in a new tab)

  2. Synthesis and engineering of metal-organic frameworks for liquid phase applications

    Metal-organic frameworks (MOFs) are a class of highly versatile porous materials expressing previously unobserved high surface areas and tuneable both internal and external chemical environments. However, the current shortfall of these structures is insufficient data on their chemical stability as …

    cambridge Repository record for Synthesis and engineering of metal-organic frameworks for liquid phase applications (opens in a new tab)

  3. Host-Guest Systems and Their Derivatives Based on Metal-Organic Frameworks

    … More recently, metal-organic frameworks (MOFs), which are hybrid hosts assembled with metal centres and organic ligands, start to be considered for creating host-guest composites. Apart from the aforementioned confinement effects, MOFs with diverse chemistries as hosts can give rise to a …

    cambridge Repository record for Host-Guest Systems and Their Derivatives Based on Metal-Organic Frameworks (opens in a new tab)

  4. Interfacial Energy Transfer in Small Hydrocarbon Collisions with Organic Surfaces and the Decomposition of Chemical Warfare Agent Simulants within Metal-Organic Frameworks

    … simulants on or within metal-organic frameworks (MOFs). The work presented here represents the first such study reported in with traditional surface-science based methods have been applied to the study of MOF chemistry. The mechanism and kinetics of interactions between dimethyl methylphosphonate …

    vt Repository record for Interfacial Energy Transfer in Small Hydrocarbon Collisions with Organic Surfaces and the Decomposition of Chemical Warfare Agent Simulants within Metal-Organic Frameworks (opens in a new tab)

  5. High-Throughput Synthesis of Metal–Organic Frameworks in a Continuous Flow Reactor

    Metal–organic frameworks (MOFs) are promising materials for a wide range of applications given their chemical stability and structural tunability. MOFs are crystalline coordination complexes consisting of organic linkers and inorganic polynuclear metal clusters forming highly ordered 2D and 3D …

    mit Repository record for High-Throughput Synthesis of Metal–Organic Frameworks in a Continuous Flow Reactor (opens in a new tab)

  6. Amorphisation Mechanisms of Metal-Organic Frameworks under High Pressures and Temperatures

    Metal-organic frameworks (MOFs) are a versatile class of hybrid inorganic-organic materials known for their adjustable chemical and physical properties, as well as their exceptional porosity. These characteristics render MOFs particularly valuable for applications requiring extensive surface areas, …

    cambridge Repository record for Amorphisation Mechanisms of Metal-Organic Frameworks under High Pressures and Temperatures (opens in a new tab)

  7. Metal-Organic Frameworks as a Platform for Therapeutic Delivery

    Metal-organic frameworks (MOFs) are porous self-assembling materials composed of inorganic nodes and organic linkers, and are currently used for catalysis, gas separation, and gas storage. They have recently been applied to drug delivery because of their large pore sizes and highly modifiable …

    cambridge Repository record for Metal-Organic Frameworks as a Platform for Therapeutic Delivery (opens in a new tab)