The aggregation state of nanoparticles (NPs) must be precisely known in order to study the structure-property relationship and to evaluate the exploitability of NPs dispersion for a given application. Here we report a general technique for sample preparation to investigate with transmission electron microscopy (TEM) the state of aggregation of NPs dispersed in liquid solution. Following a simple procedure which requires few minutes, the aggregates of NPs are “frozen” in a polymeric matrix simultaneously to their deposition on a TEM grid. Our technique is of general applicability and it avoids the use of cryo-TEM, which is more expensive, more time consuming and less common than ordinary TEM. Compared to the investigation of NPs aggregation...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
The investigation of solution-borne nanostructures by transmission electron microscopy (TEM) is a fr...
The self-assembly process of nanoparticles in liquid environment depends crucially on the colloidal ...
The aggregation state of nanoparticles (NPs) must be precisely known in order to study the structure...
A new approach to the study of nanoparticle systems has been introduced. Nanoparticle systems in aqu...
Aggregation of nanoparticles impacts their reactivity, stability, transport, and fate in aqueous env...
<p>TEM is one of the few techniques that can identify nanoparticles according to the current d...
Aggregation of nanoparticles impacts their reactivity, stability, transport, and fate in aqueous env...
Abstract The Use of Liquid Phase Transmission Electron Microscopy for Quantifying Interactions Betwe...
Transmission electron microscopy (TEM) is the only technique which can give accurate information on ...
Drying a nanoparticle dispersion is a versatile way to create self-assembled structures of nanoparti...
Gold colloidal particles were found to spontaneously organize into linear aggregates in ethanol. The...
We report on real-time observations of the aggregation of gold nanoparticles using a custom-made liq...
Nanoparticles are prone to clustering either via aggregation (irreversible) or agglomeration (revers...
We present a critical review of the common methods for determining the dispersion state of nanoparti...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
The investigation of solution-borne nanostructures by transmission electron microscopy (TEM) is a fr...
The self-assembly process of nanoparticles in liquid environment depends crucially on the colloidal ...
The aggregation state of nanoparticles (NPs) must be precisely known in order to study the structure...
A new approach to the study of nanoparticle systems has been introduced. Nanoparticle systems in aqu...
Aggregation of nanoparticles impacts their reactivity, stability, transport, and fate in aqueous env...
<p>TEM is one of the few techniques that can identify nanoparticles according to the current d...
Aggregation of nanoparticles impacts their reactivity, stability, transport, and fate in aqueous env...
Abstract The Use of Liquid Phase Transmission Electron Microscopy for Quantifying Interactions Betwe...
Transmission electron microscopy (TEM) is the only technique which can give accurate information on ...
Drying a nanoparticle dispersion is a versatile way to create self-assembled structures of nanoparti...
Gold colloidal particles were found to spontaneously organize into linear aggregates in ethanol. The...
We report on real-time observations of the aggregation of gold nanoparticles using a custom-made liq...
Nanoparticles are prone to clustering either via aggregation (irreversible) or agglomeration (revers...
We present a critical review of the common methods for determining the dispersion state of nanoparti...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
The investigation of solution-borne nanostructures by transmission electron microscopy (TEM) is a fr...
The self-assembly process of nanoparticles in liquid environment depends crucially on the colloidal ...