Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a technique that has been developed recently for carrying out in situ solid-state NMR studies of adsorption processes. From 1H MAS NMR spectra recorded as a function of time and temperature during the hydration process, insights are established on the nature of the interaction between the adsorbed water molecules and the ammonium cations in the ZSM-5 material. The change in isotropic chemical shift for the ammonium cations is consistent with the formation of N–H⋯O hydrogen bonding with the water molecules. Studies of the adsorption of deuterated water, and dehydration of the hydrated material, are also reported
Oxygen-17 solid-state NMR studies of waters of hydration in crystalline solids are presented. The 1...
Oxygen-17 solid-state NMR studies of waters of hydration in crystalline solids are presented. The 1...
Solid State NMR spectroscopy has taken a very prominent place among the many spectroscopic technique...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
A technique developed recently for in situ solid-state 1H NMR studies of adsorption processes has be...
A technique developed recently for in situ solid-state 1H NMR studies of adsorption processes has be...
A technique developed recently for in situ solid-state 1H NMR studies of adsorption processes has be...
A technique developed recently for in situ solid-state 1H NMR studies of adsorption processes has be...
Typescript (photocopy).Zeolites are inorganic solid acids which arc important in many industrial het...
Typescript (photocopy).Zeolites are inorganic solid acids which arc important in many industrial het...
Oxygen-17 solid-state NMR studies of waters of hydration in crystalline solids are presented. The 1...
Oxygen-17 solid-state NMR studies of waters of hydration in crystalline solids are presented. The 1...
Solid State NMR spectroscopy has taken a very prominent place among the many spectroscopic technique...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
Hydration of the ammonium form of the solid acid catalyst ZSM-5 is investigated by applying a techni...
A technique developed recently for in situ solid-state 1H NMR studies of adsorption processes has be...
A technique developed recently for in situ solid-state 1H NMR studies of adsorption processes has be...
A technique developed recently for in situ solid-state 1H NMR studies of adsorption processes has be...
A technique developed recently for in situ solid-state 1H NMR studies of adsorption processes has be...
Typescript (photocopy).Zeolites are inorganic solid acids which arc important in many industrial het...
Typescript (photocopy).Zeolites are inorganic solid acids which arc important in many industrial het...
Oxygen-17 solid-state NMR studies of waters of hydration in crystalline solids are presented. The 1...
Oxygen-17 solid-state NMR studies of waters of hydration in crystalline solids are presented. The 1...
Solid State NMR spectroscopy has taken a very prominent place among the many spectroscopic technique...