Measurements of solution-phase crystal growth provide mechanistic information that is helpful in designing and synthesizing nanostructures. Here, we examine the model system of individual Au nanocrystal formation within a defined liquid geometry during electron beam irradiation of gold chloride solution, where radiolytically formed hydrated electrons reduce Au ions to solid Au. By selecting conditions that favor the growth of well-faceted Au nanoprisms, we measure growth rates of individual crystals. The volume of each crystal increases linearly with irradiation time at a rate unaffected by its shape or proximity to neighboring crystals, implying a growth process that is controlled by the arrival of atoms from solution. Furthermore, growth ...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
In this article, we report on complex nanochemistry and transport phenomena associated with silver n...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Utilizing ionizing radiation for in situ studies in liquid media enables uniqueinsights into nanostr...
The growth of colloidal nanoparticles is simultaneously driven by kinetic and thermodynamic effects ...
Although nanocrystal morphology is controllable using conventional colloidal synthesis, multiple cha...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
In this article, we report on complex nanochemistry and transport phenomena associated with silver n...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Utilizing ionizing radiation for in situ studies in liquid media enables uniqueinsights into nanostr...
The growth of colloidal nanoparticles is simultaneously driven by kinetic and thermodynamic effects ...
Although nanocrystal morphology is controllable using conventional colloidal synthesis, multiple cha...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
In this article, we report on complex nanochemistry and transport phenomena associated with silver n...