We use a combination of real-space geometric algebra and reciprocal space dynamical matrix analyses to study the effect of cation substitution on the framework geometries of β-quartz, cordierite and leucite. We show that the geometric stress associated with the substitution in these framework silicates is absorbed by rigid-unit type motion of those coordination polyhedra near the substitution site. We find that the inherent flexibility of these structures enables screening of geometric stress, such that the associated energy cost is minimal and unlikely to influence substitution patterns. © 2005 Elsevier B.V. All rights reserved
We apply our deformation theory of periodic bar-and-joint frameworks to tetrahedral crystal structur...
Rigidity theory allows to predict the behavior of many properties of glasses with respect to composi...
Rigidity theory allows to predict the behavior of many properties of glasses with respect to composi...
We use a combination of real-space geometric algebra and reciprocal space dynamical matrix analyses ...
We use a combination of real-space geometric algebra and reciprocal space dynamical matrix analyses ...
We use a combination of real-space geometric algebra and reciprocal space dynamical matrix analyses ...
Framework materials have structures containing strongly bonded polyhedral groups of atoms connected ...
Framework materials have structures containing strongly bonded polyhedral groups of atoms connected ...
A method of calculating the number and nature of rigid unit modes (RUMs) in linearly bridged framewo...
A method of calculating the number and nature of rigid unit modes (RUMs) in linearly bridged framewo...
A method of calculating the number and nature of rigid unit modes (RUMs) in linearly bridged framewo...
Isovalent cation substitution into rocksalt oxides, MO, has been investigated using atomistic simula...
Zeolite and quartz with tetrahedral structure are selected to be researched on their geometrical beh...
Recent analytical models for the Poisson?s ratios (íij) of tetrahedral frameworks are applied to á-c...
Zeolite and quartz with tetrahedral structure are selected to be researched on their geometrical beh...
We apply our deformation theory of periodic bar-and-joint frameworks to tetrahedral crystal structur...
Rigidity theory allows to predict the behavior of many properties of glasses with respect to composi...
Rigidity theory allows to predict the behavior of many properties of glasses with respect to composi...
We use a combination of real-space geometric algebra and reciprocal space dynamical matrix analyses ...
We use a combination of real-space geometric algebra and reciprocal space dynamical matrix analyses ...
We use a combination of real-space geometric algebra and reciprocal space dynamical matrix analyses ...
Framework materials have structures containing strongly bonded polyhedral groups of atoms connected ...
Framework materials have structures containing strongly bonded polyhedral groups of atoms connected ...
A method of calculating the number and nature of rigid unit modes (RUMs) in linearly bridged framewo...
A method of calculating the number and nature of rigid unit modes (RUMs) in linearly bridged framewo...
A method of calculating the number and nature of rigid unit modes (RUMs) in linearly bridged framewo...
Isovalent cation substitution into rocksalt oxides, MO, has been investigated using atomistic simula...
Zeolite and quartz with tetrahedral structure are selected to be researched on their geometrical beh...
Recent analytical models for the Poisson?s ratios (íij) of tetrahedral frameworks are applied to á-c...
Zeolite and quartz with tetrahedral structure are selected to be researched on their geometrical beh...
We apply our deformation theory of periodic bar-and-joint frameworks to tetrahedral crystal structur...
Rigidity theory allows to predict the behavior of many properties of glasses with respect to composi...
Rigidity theory allows to predict the behavior of many properties of glasses with respect to composi...