Multiply twinned silver particles of rod-like shape and nanometer dimensions prepared by inert-gas aggregation technique have been studied by high-resolution electron microscopy. These pentagonal nanorods exhibit aspect ratio between 1.8 and 6 with the length of their fivefold axis ranging from 22 to 132 nm. Digital image processing and evaluation was utilised to characterise composition and lattice structure of the nanorods. Measuring the spacings of lattice plane fringes of nanorod subunits in various orientations revealed no deviation from the face centred cubic lattice type. There was also no indication of extended lattice defects found. Instead, a certain extent of non-regular lattice distortions recognised in the surface regions of th...
International audienceThe structure of (Au) bipyramids, very promising for their specific plasmonic ...
Hong et al. (1) reported that they had success-fully produced arrays of single-crystal silver nanowi...
Transmission electron microscopy (TEM) is a powerful and versatile tool for investigating nanomateri...
Multiply twinned silver particles of rod-like shape and nanometer dimensions prepared by inert-gas a...
ABSTRACT We determine the three-dimensional shape, to within 1 nm resolution, of single-crystal gold...
Observations on small vapour-deposited particles of silver and gold with direct lattice imaging in t...
The crystallographic properties of silver nanoparticles with different morphologies (two different k...
Structural investigations by using high-resolution transmission electron microscopy (HRTEM) and sele...
Determining the structures of nanoparticles at atomic resolution is vital to understand their struct...
International audienceIn the present work we report a modified configuration of a multiply twinned d...
Formation of Ag6Mo10O33 nanowires, Ag2MoO4 nanoparticles, and Ag2Mo2O7 nanorods embedded in silver m...
Self-assembly of gold nanorods (NRs) with aspect ratio of 4.6 (12 nm in diameter and 50-60 nm in len...
The international drive to measure accurate number concentrations of nanoparticles is impeded by the...
Transmission electron microscopy is a powerful imaging tool that has found broad application in mate...
Poly(ethylene glycol) (PEG) coated silver nanowires has been hydrothermally prepared at a very slow ...
International audienceThe structure of (Au) bipyramids, very promising for their specific plasmonic ...
Hong et al. (1) reported that they had success-fully produced arrays of single-crystal silver nanowi...
Transmission electron microscopy (TEM) is a powerful and versatile tool for investigating nanomateri...
Multiply twinned silver particles of rod-like shape and nanometer dimensions prepared by inert-gas a...
ABSTRACT We determine the three-dimensional shape, to within 1 nm resolution, of single-crystal gold...
Observations on small vapour-deposited particles of silver and gold with direct lattice imaging in t...
The crystallographic properties of silver nanoparticles with different morphologies (two different k...
Structural investigations by using high-resolution transmission electron microscopy (HRTEM) and sele...
Determining the structures of nanoparticles at atomic resolution is vital to understand their struct...
International audienceIn the present work we report a modified configuration of a multiply twinned d...
Formation of Ag6Mo10O33 nanowires, Ag2MoO4 nanoparticles, and Ag2Mo2O7 nanorods embedded in silver m...
Self-assembly of gold nanorods (NRs) with aspect ratio of 4.6 (12 nm in diameter and 50-60 nm in len...
The international drive to measure accurate number concentrations of nanoparticles is impeded by the...
Transmission electron microscopy is a powerful imaging tool that has found broad application in mate...
Poly(ethylene glycol) (PEG) coated silver nanowires has been hydrothermally prepared at a very slow ...
International audienceThe structure of (Au) bipyramids, very promising for their specific plasmonic ...
Hong et al. (1) reported that they had success-fully produced arrays of single-crystal silver nanowi...
Transmission electron microscopy (TEM) is a powerful and versatile tool for investigating nanomateri...