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Metal–organic framework (MOF)-, covalent-organic framework (COF)-, and porous-organic polymers (POP)-catalyzed selective C–H bond activation and …
Although C–H functionalization is one of the simplest reactions, it requires the use of highly
active and selective catalysts. Recently, C–H-active transformations using porous materials …
active and selective catalysts. Recently, C–H-active transformations using porous materials …
MOF-enabled confinement and related effects for chemical catalyst presentation and utilization
A defining characteristic of nearly all catalytically functional MOFs is uniform, molecular-
scale porosity. MOF pores, linkers and nodes that define them, help regulate reactant and …
scale porosity. MOF pores, linkers and nodes that define them, help regulate reactant and …
Metal–organic framework-based catalysts with single metal sites
Metal–organic frameworks (MOFs) are a class of distinctive porous crystalline materials
constructed by metal ions/clusters and organic linkers. Owing to their structural diversity …
constructed by metal ions/clusters and organic linkers. Owing to their structural diversity …
Post‐synthetic surface modification of metal–organic frameworks and their potential applications
Metal–organic frameworks (MOFs) are porous hybrid materials with countless potential
applications. Most of these rely on their porous structure, tunable composition, and the …
applications. Most of these rely on their porous structure, tunable composition, and the …
Metal–organic framework (MOF) materials as polymerization catalysts: a review and recent advances
Synthetic polymers are ubiquitous across both the industrial and consumer segments of the
world economy. Catalysts enable rapid, efficient, selective, and even stereoselective …
world economy. Catalysts enable rapid, efficient, selective, and even stereoselective …
Zirconium-based metal–organic frameworks for the catalytic hydrolysis of organophosphorus nerve agents
Organophoshorus nerve agents are among the most toxic chemicals known to humans, and
because of their unfortunate recent use despite international bans, there is an urgent need …
because of their unfortunate recent use despite international bans, there is an urgent need …
Reticular Chemistry 3.2: Typical Minimal Edge-Transitive Derived and Related Nets for the Design and Synthesis of Metal–Organic Frameworks
Reticular chemistry has proven as a notable/distinctive discipline aimed at the deliberate
assembly of periodic solids, offering great opportunities to effectively deploy the gained …
assembly of periodic solids, offering great opportunities to effectively deploy the gained …
Metal–organic frameworks as catalysts and biocatalysts for methane oxidation: The current state of the art
As the main component of natural and shale gas, seabed clathrates, and biogas, methane
(CH 4) is an abundant C1 resource for added-value chemicals. CH 4 is of critical importance …
(CH 4) is an abundant C1 resource for added-value chemicals. CH 4 is of critical importance …
Tuning photoactive metal–organic frameworks for luminescence and photocatalytic applications
Metal-organic frameworks (MOFs) are a class of porous materials, constructed from organic
and inorganic components. MOFs have been explored for a diverse range of applications …
and inorganic components. MOFs have been explored for a diverse range of applications …
A practice of reticular chemistry: construction of a robust mesoporous palladium metal–organic framework via metal metathesis
Constructing stable palladium (II)-based metal–organic frameworks (MOFs) would unlock
more opportunities for MOF chemistry, particularly toward applications in catalysis. However …
more opportunities for MOF chemistry, particularly toward applications in catalysis. However …