YesUnderstanding the effect of physical parameters (e.g., temperature) on crystallisation dynamics is of paramount importance for the synthesis of nanocrystals of well‐defined sizes and geometries. However, imaging nucleation and growth is an experimental challenge owing to the resolution required and the kinetics involved. Here, by using an aberration‐corrected transmission electron microscope, we report the fabrication of precious metal nanocrystals from nuclei and the identification of the dynamics of their nucleation at three different temperatures (20, 50, and 100 °C). A fast, and apparently linear, acceleration of the growth rate is observed against increasing temperature (78.8, 117.7, and 176.5 pm min−1, respectively). This work appe...
Transmission electron microscopy (TEM) is used to study growth of MoS<sub>2</sub> nanocrystals <i>in...
Colloidal noble-metal nanocrystals have tremendous potential in applications ranging from medicine t...
Nanocrystals exhibit interesting electrical, optical, magnetic, and chemical properties not achieved...
The fabrication of precious metal (ruthenium, osmium, gold, and iridium) nanocrystals from single at...
YesThe fabrication of precious metal (ruthenium, osmium, gold, and iridium) nanocrystals from single...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
YesMetal nanocrystals offer new concepts for the design of nanodevices with a range of potential app...
A library of thio- and selenourea derivatives is used to adjust the kinetics of PbE (E = S, Se) nano...
This dissertation is focused on the development of a quantitative analysis of the thermodynamic and ...
In this article, we report on complex nanochemistry and transport phenomena associated with silver n...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
Understanding nucleation phenomena is crucial across all branches of physical and natural sciences. ...
Although nanocrystal morphology is controllable using conventional colloidal synthesis, multiple cha...
Transmission electron microscopy (TEM) is used to study growth of MoS<sub>2</sub> nanocrystals <i>in...
Colloidal noble-metal nanocrystals have tremendous potential in applications ranging from medicine t...
Nanocrystals exhibit interesting electrical, optical, magnetic, and chemical properties not achieved...
The fabrication of precious metal (ruthenium, osmium, gold, and iridium) nanocrystals from single at...
YesThe fabrication of precious metal (ruthenium, osmium, gold, and iridium) nanocrystals from single...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
YesMetal nanocrystals offer new concepts for the design of nanodevices with a range of potential app...
A library of thio- and selenourea derivatives is used to adjust the kinetics of PbE (E = S, Se) nano...
This dissertation is focused on the development of a quantitative analysis of the thermodynamic and ...
In this article, we report on complex nanochemistry and transport phenomena associated with silver n...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
Understanding nucleation phenomena is crucial across all branches of physical and natural sciences. ...
Although nanocrystal morphology is controllable using conventional colloidal synthesis, multiple cha...
Transmission electron microscopy (TEM) is used to study growth of MoS<sub>2</sub> nanocrystals <i>in...
Colloidal noble-metal nanocrystals have tremendous potential in applications ranging from medicine t...
Nanocrystals exhibit interesting electrical, optical, magnetic, and chemical properties not achieved...