The high-silica zeolite SSZ-27 was synthesized using one of the isomers of the organic structure-directing agent that is known to produce the large-pore zeolite SSZ-26 (CON). The structure of the as-synthesized form was solved using multi-crystal electron diffraction data. Data were collected on eighteen crystals, and to obtain a high-quality and complete data set for structure refinement, hierarchical cluster analysis was employed to select the data sets most suitable for merging. The framework structure of SSZ-27 can be described as a combination of two types of cavities, one of which is shaped like a heart. The cavities are connected through shared 8-ring windows to create straight channels that are linked together in pairs to form a one...
3D electron diffraction (3D ED) has evolved as a powerful method for ab initio structure determinati...
Electron crystallography has recently become very successful for structural studies of materials wit...
We describe HPM-14, a new extra-large pore zeolite synthesized using imidazolium-based organic struc...
The high-silica zeolite SSZ-27 was synthesized using one of the isomers of the organic structure-dir...
The high‐silica zeolite SSZ‐27 was synthesized using one of the isomers of the organic structure‐dir...
The prediction and synthesis of new crystal structures enable the targeted preparation of materials ...
The framework structures of two closely related molecular sieves, SSZ-26 and SSZ-33, are described. ...
Zeolites are crystalline microporous aluminosilicates with well-defined cavities or channels of mole...
This paper reports the synthesis, characterization, and crystallographic studies of the new all-sili...
A multidimensional extra-large pore germanosilicate, denoted ITQ-56, has been synthesized by using m...
The structure of the as-synthesized borosilicate zeolite SSZ-87 has been solved by combining high-re...
A novel structural coding approach combining structure solution, prediction, and the targeted synthe...
Stable, multidimensional, and extra-large pore zeolites are desirable by industry for catalysis and ...
HPM-14 is a new extra-large pore zeolite synthesized using imidazolium-based organic structuredirect...
A new molecular sieve, ITQ-38, containing interconnected large and medium pores in its structure has...
3D electron diffraction (3D ED) has evolved as a powerful method for ab initio structure determinati...
Electron crystallography has recently become very successful for structural studies of materials wit...
We describe HPM-14, a new extra-large pore zeolite synthesized using imidazolium-based organic struc...
The high-silica zeolite SSZ-27 was synthesized using one of the isomers of the organic structure-dir...
The high‐silica zeolite SSZ‐27 was synthesized using one of the isomers of the organic structure‐dir...
The prediction and synthesis of new crystal structures enable the targeted preparation of materials ...
The framework structures of two closely related molecular sieves, SSZ-26 and SSZ-33, are described. ...
Zeolites are crystalline microporous aluminosilicates with well-defined cavities or channels of mole...
This paper reports the synthesis, characterization, and crystallographic studies of the new all-sili...
A multidimensional extra-large pore germanosilicate, denoted ITQ-56, has been synthesized by using m...
The structure of the as-synthesized borosilicate zeolite SSZ-87 has been solved by combining high-re...
A novel structural coding approach combining structure solution, prediction, and the targeted synthe...
Stable, multidimensional, and extra-large pore zeolites are desirable by industry for catalysis and ...
HPM-14 is a new extra-large pore zeolite synthesized using imidazolium-based organic structuredirect...
A new molecular sieve, ITQ-38, containing interconnected large and medium pores in its structure has...
3D electron diffraction (3D ED) has evolved as a powerful method for ab initio structure determinati...
Electron crystallography has recently become very successful for structural studies of materials wit...
We describe HPM-14, a new extra-large pore zeolite synthesized using imidazolium-based organic struc...