Metastable phases may be spontaneously formed from other metastable phases through nucleation. Here we demonstrate the spontaneous formation of a metastable phase from an unstable equilibrium by spinodal decomposition, which leads to a transient coexistence of stable and metastable phases. This phenomenon is generic within the recently introduced scenario of the landscape-inversion phase transitions, which we experimentally realize as a structural transition in a colloidal crystal. This transition exhibits a rich repertoire of new phase-ordering phenomena, including the coexistence of two equilibrium phases connected by two physically different interfaces. In addition, this scenario enables the control of sizes and lifetimes of metastable d...
When a solution is supersaturated with respect to multiple polymorphs, the polymorph with the lowest...
Analysis and design of materials and fluids requires understanding of the fundamental relationships ...
The official version of this Article can be accessed from the link below - Copyright @ 2007 American...
Metastable phases may be spontaneously formed from other metastable phases through nucleation. Here ...
The modern theory of phase transitions cannot explain the results of many experiments of interphase ...
We present theory and simulation of simultaneous chemical demixing and phase ordering in a polymer-l...
Mesophase–particle mixtures are emerging functional material systems whose structure, dynamics and f...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
We report on the results of extensive Brownian dynamics simulations of colloid phase separation due ...
Several scenarios exist for the protein crystallization and aggregation in solutions near a metastab...
Spinodal decomposition is observed in a variety of materials, such as metal alloys, oxide glasses, m...
The kinetics of spinodal-assisted crystallization in a region of the phase diagram where the dynamic...
Solvent wrapped “metastable” crystalline colloidal arrays (CCAs) have been prepared by supersaturati...
We determine the kinetic phase diagram for nucleation and growth of crystal phases in a suspension o...
Several scenarios exist for the protein crystallization and aggregation in solutions near a metastab...
When a solution is supersaturated with respect to multiple polymorphs, the polymorph with the lowest...
Analysis and design of materials and fluids requires understanding of the fundamental relationships ...
The official version of this Article can be accessed from the link below - Copyright @ 2007 American...
Metastable phases may be spontaneously formed from other metastable phases through nucleation. Here ...
The modern theory of phase transitions cannot explain the results of many experiments of interphase ...
We present theory and simulation of simultaneous chemical demixing and phase ordering in a polymer-l...
Mesophase–particle mixtures are emerging functional material systems whose structure, dynamics and f...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
We report on the results of extensive Brownian dynamics simulations of colloid phase separation due ...
Several scenarios exist for the protein crystallization and aggregation in solutions near a metastab...
Spinodal decomposition is observed in a variety of materials, such as metal alloys, oxide glasses, m...
The kinetics of spinodal-assisted crystallization in a region of the phase diagram where the dynamic...
Solvent wrapped “metastable” crystalline colloidal arrays (CCAs) have been prepared by supersaturati...
We determine the kinetic phase diagram for nucleation and growth of crystal phases in a suspension o...
Several scenarios exist for the protein crystallization and aggregation in solutions near a metastab...
When a solution is supersaturated with respect to multiple polymorphs, the polymorph with the lowest...
Analysis and design of materials and fluids requires understanding of the fundamental relationships ...
The official version of this Article can be accessed from the link below - Copyright @ 2007 American...