Cowlesite, ideally Ca6Al12Si18O60·36H2O, is to date the only natural zeolite whose structure could not be determined by X-ray methods. In this paper, we present the ab initio structure determination of this mineral obtained by three-dimensional (3D) electron diffraction data collected from single-crystal domains of a few hundreds of nanometers. The structure of cowlesite consists of an alternation of rigid zeolitic layers and low-density interlayers supported by water and cations. This makes cowlesite the only two-dimensional (2D) zeolite known in nature. When cowlesite gets in contact with a transmission electron microscope vacuum, a phase transition to a conventional 3D zeolite framework occurs in few seconds. The original cowlesite struc...
In this work a new ultrafast data collection strategy for electron diffraction tomography is present...
Zeolites are widely used in catalysis, gas separation, ion exchange, etc. due to their superior phys...
In this work a new ultrafast data collection strategy for electron diffraction tomography is present...
Cowlesite, ideally Ca6Al12Si18O60·36H2O, is to date the only natural zeolite whose structure could n...
3D electron diffraction (3D ED) has evolved as a powerful method for ab initio structure determinati...
Electron crystallography has evolved as a powerful method for structural characterization of a wide ...
Electron crystallography has recently become very successful for structural studies of materials wit...
Many industrially important materials, ranging from ceramics to catalysts to pharmaceuticals, are po...
Zeolites are crystalline microporous aluminosilicates with well-defined cavities or channels of mole...
Electron crystallography is an important technique for studying micro- and nano-sized materials. It ...
Structure determination of complicated structure from powder crystalline phases is always a challeng...
The structure of the complex zeolite IM-5 (Cmcm, a = 14.33(4) Å, b = 56.9(2) Å, c = 20.32(7) Å) was ...
Ordered nanoporous structures are among the most fascinating and industrially important materials cu...
The crystal structure determines the physical properties of a material. The structure can be analyse...
Trabajo presentado en el XXII International Materials Research Congress, celebrado en Cancún (México...
In this work a new ultrafast data collection strategy for electron diffraction tomography is present...
Zeolites are widely used in catalysis, gas separation, ion exchange, etc. due to their superior phys...
In this work a new ultrafast data collection strategy for electron diffraction tomography is present...
Cowlesite, ideally Ca6Al12Si18O60·36H2O, is to date the only natural zeolite whose structure could n...
3D electron diffraction (3D ED) has evolved as a powerful method for ab initio structure determinati...
Electron crystallography has evolved as a powerful method for structural characterization of a wide ...
Electron crystallography has recently become very successful for structural studies of materials wit...
Many industrially important materials, ranging from ceramics to catalysts to pharmaceuticals, are po...
Zeolites are crystalline microporous aluminosilicates with well-defined cavities or channels of mole...
Electron crystallography is an important technique for studying micro- and nano-sized materials. It ...
Structure determination of complicated structure from powder crystalline phases is always a challeng...
The structure of the complex zeolite IM-5 (Cmcm, a = 14.33(4) Å, b = 56.9(2) Å, c = 20.32(7) Å) was ...
Ordered nanoporous structures are among the most fascinating and industrially important materials cu...
The crystal structure determines the physical properties of a material. The structure can be analyse...
Trabajo presentado en el XXII International Materials Research Congress, celebrado en Cancún (México...
In this work a new ultrafast data collection strategy for electron diffraction tomography is present...
Zeolites are widely used in catalysis, gas separation, ion exchange, etc. due to their superior phys...
In this work a new ultrafast data collection strategy for electron diffraction tomography is present...