Crystal nucleation is facilitated by transient, nanoscale fluctuations that are extraordinarily difficult to observe. Here, we use high-speed atomic force microscopy to directly observe the growth of an aluminum hydroxide film from an aqueous solution and characterize the dynamically fluctuating nanostructures that precede its formation. Nanoscale cluster distributions and fluctuation dynamics show many similarities to the predictions of classical nucleation theory, but the cluster energy landscape deviates from classical expectations. Kinetic Monte Carlo simulations show that these deviations can arise from electrostatic interactions between the clusters and the underlying substrate, which drive microphase separation to create a nanostruct...
Although Al(III) hydrolysis, condensation, and nucleation play pivotal roles in the synthesis of Al-...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
In electrodeposition the key challenge is to obtain better control over nanostructure morphology. Cu...
The real-time visualization of stochastic nucleation events at electrode surfaces is one of the most...
High resolution atomic force microscopy (AFM) is used to resolve the evolution of crystallites of a ...
Understanding how surfaces direct nucleation is a complex problem that limits our ability to predict...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Quartz nucleation normally requires harsh conditions; for instance, hydrothermal processes at 200–30...
Atomic and molecular level interactions in solutions dictate the structural and functional attribute...
Field and laboratory observations show that crystals commonly form by the addition and attachment of...
High resolution atomic force microscopy (AFM) is used to resolve the evolution of crystallites of a ...
The basic physics of nucleation in solid single-crystal nanoparticles is revealed by a phase-field t...
Nucleation is a fundamental step in crystal growth. Of environmental and materials relevance are rea...
The interaction of water with surfaces is crucially important in a wide range of natural and technol...
International audienceOxide nanoparticles (NP) are currently drawing a lot of attention because of t...
Although Al(III) hydrolysis, condensation, and nucleation play pivotal roles in the synthesis of Al-...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
In electrodeposition the key challenge is to obtain better control over nanostructure morphology. Cu...
The real-time visualization of stochastic nucleation events at electrode surfaces is one of the most...
High resolution atomic force microscopy (AFM) is used to resolve the evolution of crystallites of a ...
Understanding how surfaces direct nucleation is a complex problem that limits our ability to predict...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Quartz nucleation normally requires harsh conditions; for instance, hydrothermal processes at 200–30...
Atomic and molecular level interactions in solutions dictate the structural and functional attribute...
Field and laboratory observations show that crystals commonly form by the addition and attachment of...
High resolution atomic force microscopy (AFM) is used to resolve the evolution of crystallites of a ...
The basic physics of nucleation in solid single-crystal nanoparticles is revealed by a phase-field t...
Nucleation is a fundamental step in crystal growth. Of environmental and materials relevance are rea...
The interaction of water with surfaces is crucially important in a wide range of natural and technol...
International audienceOxide nanoparticles (NP) are currently drawing a lot of attention because of t...
Although Al(III) hydrolysis, condensation, and nucleation play pivotal roles in the synthesis of Al-...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
In electrodeposition the key challenge is to obtain better control over nanostructure morphology. Cu...