The structures of solids can locally differ from the macroscopic picture obtained by structural averaging techniques. This difference significantly influences the performance of any functional material. Measurements of these local structures are challenging. Thus, the description of defects is often disregarded. However, in order to understand the functionality, such irregularities have to be investigated. Here, we present a high resolution scanning transmission electron microscopic (STEM) study revealing local structural irregularities in open structured oxides using catalytically active orthorhombic (Mo,V,Te,Nb)O-x as a complex example. Detailed analysis of annular dark field- and annular bright field-STEM images reveal site specific loca...
The complex (Mo,V)-based multicomponent M1 phase with a characteristic network of pentagonal, hexago...
Zeolites are widely used in catalysis, gas separation, ion exchange, etc. due to their superior phys...
The identification of the two molybdenum sub-oxides, Mo<sub>18</sub>O<sub>52</sub> and Mo<sub>8</sub...
The structures of solids can locally differ from the macroscopic picture obtained by structural aver...
We present an analytical route toward a detailed and quantitative description of individual defects ...
Complex Mo,V-based mixed oxides that crystallize in the orthorhombic M1-type structure are promising...
The determination of the atomic structure of a functional material is crucial to understanding its “...
Perovskite oxides remain a material class with properties that can be difficult to predict. Strong e...
The potential applicability of high-resolution electron microscopy (HREM), in combination with image...
The local composition of heterogeneous catalysts can deviate from average values obtained by integra...
The controlled assembly of materials on the nanoscale has been a major focus of research across many...
International audienceComplex oxides, which have a wide range of characteristics, have a lot of pote...
Twenty years ago, one of us embarked (Bursill, L. A.; Lodge, E. A.; Thomas, J. M. Zeolitic structure...
Understanding the emergent physical phenomena at surfaces requires the capability to probe local com...
Doped complex oxides show a wide range of interesting properties due to a strong interplay andcompet...
The complex (Mo,V)-based multicomponent M1 phase with a characteristic network of pentagonal, hexago...
Zeolites are widely used in catalysis, gas separation, ion exchange, etc. due to their superior phys...
The identification of the two molybdenum sub-oxides, Mo<sub>18</sub>O<sub>52</sub> and Mo<sub>8</sub...
The structures of solids can locally differ from the macroscopic picture obtained by structural aver...
We present an analytical route toward a detailed and quantitative description of individual defects ...
Complex Mo,V-based mixed oxides that crystallize in the orthorhombic M1-type structure are promising...
The determination of the atomic structure of a functional material is crucial to understanding its “...
Perovskite oxides remain a material class with properties that can be difficult to predict. Strong e...
The potential applicability of high-resolution electron microscopy (HREM), in combination with image...
The local composition of heterogeneous catalysts can deviate from average values obtained by integra...
The controlled assembly of materials on the nanoscale has been a major focus of research across many...
International audienceComplex oxides, which have a wide range of characteristics, have a lot of pote...
Twenty years ago, one of us embarked (Bursill, L. A.; Lodge, E. A.; Thomas, J. M. Zeolitic structure...
Understanding the emergent physical phenomena at surfaces requires the capability to probe local com...
Doped complex oxides show a wide range of interesting properties due to a strong interplay andcompet...
The complex (Mo,V)-based multicomponent M1 phase with a characteristic network of pentagonal, hexago...
Zeolites are widely used in catalysis, gas separation, ion exchange, etc. due to their superior phys...
The identification of the two molybdenum sub-oxides, Mo<sub>18</sub>O<sub>52</sub> and Mo<sub>8</sub...