Ammonia is useful for the production of fertilizers and chemicals for modern technology, but its high toxicity and corrosiveness are harmful to the environment and human health. Here, we report the recyclable and tunable ammonia adsorption using a robust imidazolium-based MOF (JCM-1) that uptakes 5.7 mmol g(-1) of NH3 at 298 K reversibly without structural deformation. Furthermore, a simple substitution of NO3- with Cl- in a post-synthetic manner leads to an increase in the NH3 uptake capacity of JCM-1(Cl-) up to 7.2 mmol g(-1).11Nsciescopu
Ammonia (NH3) is a promising energy resource owing to its high hydrogen density. However, its widesp...
Ammonia (NH3) is a promising energy resource owing to its high hydrogen density. However, its widesp...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
Ammonia is useful for the production of fertilizers and chemicals for modern technology, but its hig...
Herein, we present a new strategy to design metal-organic frameworks (MOFs) as adsorbents for ammoni...
The structural diversity and designability of metal-organic frameworks (MOFs) make these porous mate...
The structural diversity and designability of metal-organic frameworks (MOFs) make these porous mate...
Ammonia serves as an essential feedstock in several large industries, including fertilizer and explo...
Ammonia (NH3) is a common pollutant mostly derived from pig manure composting under humid conditions...
A series of new mesoporous metal–organic frameworks (MOFs) made from extended bisbenzenetriazolate l...
Ammonia (NH3) emissions during agricultural production can cause serious consequences on animal and ...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
Ammonia (NH3) is a promising energy resource owing to its high hydrogen density. However, its widesp...
Ammonia (NH3) is a promising energy resource owing to its high hydrogen density. However, its widesp...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
Ammonia is useful for the production of fertilizers and chemicals for modern technology, but its hig...
Herein, we present a new strategy to design metal-organic frameworks (MOFs) as adsorbents for ammoni...
The structural diversity and designability of metal-organic frameworks (MOFs) make these porous mate...
The structural diversity and designability of metal-organic frameworks (MOFs) make these porous mate...
Ammonia serves as an essential feedstock in several large industries, including fertilizer and explo...
Ammonia (NH3) is a common pollutant mostly derived from pig manure composting under humid conditions...
A series of new mesoporous metal–organic frameworks (MOFs) made from extended bisbenzenetriazolate l...
Ammonia (NH3) emissions during agricultural production can cause serious consequences on animal and ...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...
Ammonia (NH3) is a promising energy resource owing to its high hydrogen density. However, its widesp...
Ammonia (NH3) is a promising energy resource owing to its high hydrogen density. However, its widesp...
MFM‐300(Al) shows reversible uptake of NH3 (15.7 mmol g−1 at 273 K and 1.0 bar) over 50 cycles with ...