Based on theoretical calculations of CO, NH, and pyridine adsorption at different sites in MOR and MFI zeolites, we analyze how confinement effects influence the measurement of acidity based on the interaction of probe molecules with Brönsted acid sites. Weak bases, such as CO, form neutral ZH-CO adducts with a linear configuration that can be distorted by spatial restrictions associated with the dimensions of the pore, leading to weaker interaction, but can also be stabilized by dispersion forces if a tighter fitting with the channel void is allowed. Strong bases such as NH and pyridine are readily protonated on Brönsted acid sites, and the experimentally determined adsorption enthalpies include not only the thermochemistry associated with...
The motivation behind this thesis was to use low-temperature adsorption calorimetry to characterize ...
Tetravalent-ion (M4+)-doped zeolites show excellent performances for a variety of catalytic processe...
An important factor in zeolite catalysis is the proton affinity, i.e., the energy required to remove...
Brønsted-acid zeolites are currently being used as catalysts in a wide range of technological proces...
Most industrial applications of zeolites as catalysts rely on their Bronsted acidity properties. How...
Elucidating the nature, strength, and siting of acid sites in zeolites is fundamental to fathom thei...
The characterization of the acidity of zeolites allows a direct correlation with their catalytic act...
Chemical reactivity and sorption in zeolites are coupled to confinement and-to a lesser extent-to th...
Zeolites are widely applied as solid acid catalysts in various technological processes. In this work...
The characterization of the acidity of zeolites allows a direct correlation with their catalytic act...
The understanding of location and accessibility of zeolite acid sites is a key issue in heterogeneou...
This study examines how Brønsted acid strengthsas predicted by dispersion-corrected periodic DFT ca...
Zeolites are widely applied as solid acid catalysts in various technological processes. In this work...
This review summarizes some of the recently published results concerning the acid sites in the zeoli...
Methods of identification of various acidic sites in zeolites (Brønsted sites, different types of Le...
The motivation behind this thesis was to use low-temperature adsorption calorimetry to characterize ...
Tetravalent-ion (M4+)-doped zeolites show excellent performances for a variety of catalytic processe...
An important factor in zeolite catalysis is the proton affinity, i.e., the energy required to remove...
Brønsted-acid zeolites are currently being used as catalysts in a wide range of technological proces...
Most industrial applications of zeolites as catalysts rely on their Bronsted acidity properties. How...
Elucidating the nature, strength, and siting of acid sites in zeolites is fundamental to fathom thei...
The characterization of the acidity of zeolites allows a direct correlation with their catalytic act...
Chemical reactivity and sorption in zeolites are coupled to confinement and-to a lesser extent-to th...
Zeolites are widely applied as solid acid catalysts in various technological processes. In this work...
The characterization of the acidity of zeolites allows a direct correlation with their catalytic act...
The understanding of location and accessibility of zeolite acid sites is a key issue in heterogeneou...
This study examines how Brønsted acid strengthsas predicted by dispersion-corrected periodic DFT ca...
Zeolites are widely applied as solid acid catalysts in various technological processes. In this work...
This review summarizes some of the recently published results concerning the acid sites in the zeoli...
Methods of identification of various acidic sites in zeolites (Brønsted sites, different types of Le...
The motivation behind this thesis was to use low-temperature adsorption calorimetry to characterize ...
Tetravalent-ion (M4+)-doped zeolites show excellent performances for a variety of catalytic processe...
An important factor in zeolite catalysis is the proton affinity, i.e., the energy required to remove...