Heterogeneous strong base catalysts possessing ordered nanoporous structure are highly expected due to their high activity and shape selectivity in diverse reactions. However, their fabrication remains a great challenge because quite high temperatures (600–700 °C) are compulsory for the generation of strong basicity on conventional ordered nanoporous materials (i.e., zeolites and mesoporous silicas). Here, we report for the first time direct fabrication of strong basic sites on metal–organic frameworks (MOFs) by using guest–host redox (GHR) interaction between base precursors and low-valence metal centers (e.g., Cr<sup>3+</sup>), which breaks the tradition of thermo-induced decomposition of base precursors. It is fascinating that base precu...
The several factors that render certain kinds of nanoporous oxidic solids valuable for the design of...
Metal–organic frameworks (MOFs) are highly ordered crystalline porous materials prepared by the self...
The hybrid frameworks M2dobdc (dobdc4_ = 2,5-dioxidoterephthalate, M2+=Mg2+, Co2+, Ni2+, Cu2+ and Zn...
Metal–organic frameworks, or MOFs, have emerged as a new class of porous materials made by linking m...
Metal–organic frameworks (MOFs) are a class of crystalline porous materials with reticular architect...
Metal-organic frameworks (MOFs) are a relatively new class of crystalline porous materials built up ...
A chemically and thermally stable, mesoporous, crystalline metal–organic framework, NU-1000, serves ...
A new method has been developed for generating highly dispersed base sites on metal–organic framewor...
[EN] The application of Metal-Organic Frameworks (MOFs) in gas phase heterogeneous catalysis is stil...
Geometric or electronic confinement of guests inside nanoporous hosts promises to deliver unusual ca...
Nanoporous metal oxide materials are ubiquitous in the material sciences because of their numerous p...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...
Metal-organic frameworks (MOFs) are a relatively new class of crystalline porous materials built up ...
Metal-organic frameworks (MOFs) are a class of crystalline porous materials with reticular architect...
Structure-property correlations, which direct the formation of specific active-acid sites, in nanopo...
The several factors that render certain kinds of nanoporous oxidic solids valuable for the design of...
Metal–organic frameworks (MOFs) are highly ordered crystalline porous materials prepared by the self...
The hybrid frameworks M2dobdc (dobdc4_ = 2,5-dioxidoterephthalate, M2+=Mg2+, Co2+, Ni2+, Cu2+ and Zn...
Metal–organic frameworks, or MOFs, have emerged as a new class of porous materials made by linking m...
Metal–organic frameworks (MOFs) are a class of crystalline porous materials with reticular architect...
Metal-organic frameworks (MOFs) are a relatively new class of crystalline porous materials built up ...
A chemically and thermally stable, mesoporous, crystalline metal–organic framework, NU-1000, serves ...
A new method has been developed for generating highly dispersed base sites on metal–organic framewor...
[EN] The application of Metal-Organic Frameworks (MOFs) in gas phase heterogeneous catalysis is stil...
Geometric or electronic confinement of guests inside nanoporous hosts promises to deliver unusual ca...
Nanoporous metal oxide materials are ubiquitous in the material sciences because of their numerous p...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...
Metal-organic frameworks (MOFs) are a relatively new class of crystalline porous materials built up ...
Metal-organic frameworks (MOFs) are a class of crystalline porous materials with reticular architect...
Structure-property correlations, which direct the formation of specific active-acid sites, in nanopo...
The several factors that render certain kinds of nanoporous oxidic solids valuable for the design of...
Metal–organic frameworks (MOFs) are highly ordered crystalline porous materials prepared by the self...
The hybrid frameworks M2dobdc (dobdc4_ = 2,5-dioxidoterephthalate, M2+=Mg2+, Co2+, Ni2+, Cu2+ and Zn...