Summary: Coalescence, one of the major pathways observed in the growth of nanoparticles, affects the structural diversity of the synthesized nanoparticles in terms of sizes, shapes, and grain boundaries. As coalescence events occur transiently during the growth of nanoparticles and are associated with the interaction between nanoparticles, mechanistic understanding is challenging. The ideal platform to study coalescence events may require real-time tracking of nanoparticle growth trajectories with quantitative analysis for coalescence events. Herein, we track nanoparticle growth trajectories using liquid-cell transmission electron microscopy (LTEM) to investigate the role of coalescence in nanoparticle formation and their morphologies. By e...
It is conventionally assumed that the growth of monodisperse colloidal nanocrystals requires a tempo...
Direct observations of solution-phase nanoparticle growth using in situ liquid transmission electron...
Microscale and nanoscale colloidal particle self-assembly is widely studied to establish the design ...
Coalescence, one of the major pathways observed in the growth of nanoparticles, affects the structur...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
For the past few decades, nanoparticles of various sizes, shapes, and compositions have been synthes...
An understanding of how facets of a nanocrystal develop is critical for controlling nanocrystal shap...
Coalescence is a phenomenon in which two or more nanoparticles merge to form a single larger aggrega...
Coalescence is a phenomenon in which two or more nanoparticles merge to form a single larger aggrega...
We study solution growth of platinum iron nanocrystals in situ in a liquid cell by using transmissio...
We study solution growth of platinum iron nanocrystals in situ in a liquid cell by using transmissio...
Copyright © 2021 The Authors, some rights reserved;Thermal motion of colloidal nanoparticles and the...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
Nanomaterials constitute the frontier in materials science. Materials with such length scales are ty...
This article reviews the advancements and prospects of liquid cell transmission electron microscopy ...
It is conventionally assumed that the growth of monodisperse colloidal nanocrystals requires a tempo...
Direct observations of solution-phase nanoparticle growth using in situ liquid transmission electron...
Microscale and nanoscale colloidal particle self-assembly is widely studied to establish the design ...
Coalescence, one of the major pathways observed in the growth of nanoparticles, affects the structur...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
For the past few decades, nanoparticles of various sizes, shapes, and compositions have been synthes...
An understanding of how facets of a nanocrystal develop is critical for controlling nanocrystal shap...
Coalescence is a phenomenon in which two or more nanoparticles merge to form a single larger aggrega...
Coalescence is a phenomenon in which two or more nanoparticles merge to form a single larger aggrega...
We study solution growth of platinum iron nanocrystals in situ in a liquid cell by using transmissio...
We study solution growth of platinum iron nanocrystals in situ in a liquid cell by using transmissio...
Copyright © 2021 The Authors, some rights reserved;Thermal motion of colloidal nanoparticles and the...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
Nanomaterials constitute the frontier in materials science. Materials with such length scales are ty...
This article reviews the advancements and prospects of liquid cell transmission electron microscopy ...
It is conventionally assumed that the growth of monodisperse colloidal nanocrystals requires a tempo...
Direct observations of solution-phase nanoparticle growth using in situ liquid transmission electron...
Microscale and nanoscale colloidal particle self-assembly is widely studied to establish the design ...