Characterization of nanoscale changes in the atomic structure of amorphous materials is a profound challenge. Established X-ray and neutron total scattering methods typically provide sufficient signal quality only over macroscopic volumes. Pair distribution function analysis using electron scattering (ePDF) in the scanning transmission electron microscope (STEM) has emerged as a method of probing nanovolumes of these materials, but inorganic glasses as well as metal–organic frameworks (MOFs) and many other materials containing organic components are characteristically prone to irreversible changes after limited electron beam exposures. This beam sensitivity requires ‘low-dose’ data acquisition to probe inorganic glasses, amorphous and glass...
Nanoscale structural characterization is critical to understanding the physical underpinnings of pro...
CNPQ - CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICOAtomic pair distribution functio...
© 2022 Author(s).Amorphous materials have been used in a range of electronic and photonic applicatio...
Amorphous materials have attracted interest due to their unique properties as many common objects an...
Vibrational spectroscopies directly record details of bonding in materials, but spatially resolved m...
Microstructured metal–organic framework (MOF) glasses have been produced by combining two amorphous ...
Here we explore the use of scanning electron diffraction coupled with electron atomic pair distribut...
Amorphous nanophases play a significant role for the properties of a variety of nanoscale heterogene...
Microstructured metal-organic framework (MOF) glasses have been produced by combining two amorphous ...
Several distinct mixing processes and resulting microstructures have recently been reported in multi...
The atomic structure of Ni–Pd nanoparticles has been studied using atomic pair distribution function...
We studied the atomic scale structure of bulk metallic glass (BMG) with the combination of fluctuati...
Amorphous metal–organic frameworks (MOFs) are an emerging class of materials. However, their structu...
A high performance electron lens can distinguish scattering from different regions of a sample, i.e....
Vibrational spectroscopies directly record details of bonding in materials, but spatially resolved m...
Nanoscale structural characterization is critical to understanding the physical underpinnings of pro...
CNPQ - CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICOAtomic pair distribution functio...
© 2022 Author(s).Amorphous materials have been used in a range of electronic and photonic applicatio...
Amorphous materials have attracted interest due to their unique properties as many common objects an...
Vibrational spectroscopies directly record details of bonding in materials, but spatially resolved m...
Microstructured metal–organic framework (MOF) glasses have been produced by combining two amorphous ...
Here we explore the use of scanning electron diffraction coupled with electron atomic pair distribut...
Amorphous nanophases play a significant role for the properties of a variety of nanoscale heterogene...
Microstructured metal-organic framework (MOF) glasses have been produced by combining two amorphous ...
Several distinct mixing processes and resulting microstructures have recently been reported in multi...
The atomic structure of Ni–Pd nanoparticles has been studied using atomic pair distribution function...
We studied the atomic scale structure of bulk metallic glass (BMG) with the combination of fluctuati...
Amorphous metal–organic frameworks (MOFs) are an emerging class of materials. However, their structu...
A high performance electron lens can distinguish scattering from different regions of a sample, i.e....
Vibrational spectroscopies directly record details of bonding in materials, but spatially resolved m...
Nanoscale structural characterization is critical to understanding the physical underpinnings of pro...
CNPQ - CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICOAtomic pair distribution functio...
© 2022 Author(s).Amorphous materials have been used in a range of electronic and photonic applicatio...