We have recently highlighted that H-SSZ-13, a highly siliceous zeolite (Si/Al = 11.6) with a chabazitic framework, is the most efficient zeolitic material for hydrogen storage [A. Zecchina, S. Bordiga, J. G. Vitillo, G. Ricchiardi, C. Lamberti, G. Spoto, M. Bjorgen and K. P. Lillerud, J. Am. Chem. Soc., 2005, 127, 6361]. The aim of this new study is thus to clarify both the role played by the acidic strength and by the density of the polarizing centers hosted in the same framework topology in the increase of the adsorptive capabilities of the chabazitic materials towards H2. To achieve this goal, the volumetric experiments of H2 uptake (performed at 77 K) and the transmission IR experiment of H2 adsorption at 15 K have been performed on H-S...
Zeolitic imidazolate frameworks (ZIFs) are a new class of nanoporous compounds which consist of tetr...
The interaction of molecular hydrogen with the polarizing centers of lithiumexchanged chabazites wit...
DRIFT study of dihydrogen adsorbed at 77 K by the zinc-modified hydrogen forms of mordenite and ZSM-...
We have recently highlighted that H-SSZ-13, a highly siliceous zeolite (Si/Al = 11.6) with a chabazi...
Due to its fully reversible nature, H-2 storage by molecular adsorption could represent an advantage...
We present a molecular simulation study on the most suitable zeolite topologies for hydrogen adsorpt...
The hydrogen storage properties of zeolites X, Y, A and Rho containing various exchangeable cations ...
Physisorption and encapsulation of molecular hydrogen in tailored microporous materials are two of t...
We present a molecular simulation study on the most suitable zeolite topologies for hydrogen adsorpt...
Density functional and two-layer ONIOM methods were used to understand the interactions of various i...
Density functional and two-layer ONIOM methods were used to understand the interactions of various i...
A multifaceted approach was presented to study H2 adsorption in both copper- and silver-exchanged SS...
We have investigated the use of zeolites as potential hydrogen storage materials. The zeolites A, X,...
Zeolitic imidazolate frameworks (ZIFs) are a new class of nanoporous compounds which consist of tetr...
The interaction of molecular hydrogen with the polarizing centers of lithiumexchanged chabazites wit...
DRIFT study of dihydrogen adsorbed at 77 K by the zinc-modified hydrogen forms of mordenite and ZSM-...
We have recently highlighted that H-SSZ-13, a highly siliceous zeolite (Si/Al = 11.6) with a chabazi...
Due to its fully reversible nature, H-2 storage by molecular adsorption could represent an advantage...
We present a molecular simulation study on the most suitable zeolite topologies for hydrogen adsorpt...
The hydrogen storage properties of zeolites X, Y, A and Rho containing various exchangeable cations ...
Physisorption and encapsulation of molecular hydrogen in tailored microporous materials are two of t...
We present a molecular simulation study on the most suitable zeolite topologies for hydrogen adsorpt...
Density functional and two-layer ONIOM methods were used to understand the interactions of various i...
Density functional and two-layer ONIOM methods were used to understand the interactions of various i...
A multifaceted approach was presented to study H2 adsorption in both copper- and silver-exchanged SS...
We have investigated the use of zeolites as potential hydrogen storage materials. The zeolites A, X,...
Zeolitic imidazolate frameworks (ZIFs) are a new class of nanoporous compounds which consist of tetr...
The interaction of molecular hydrogen with the polarizing centers of lithiumexchanged chabazites wit...
DRIFT study of dihydrogen adsorbed at 77 K by the zinc-modified hydrogen forms of mordenite and ZSM-...