Superlattice structures formed by nanoparticle (NP) self-assembly have attracted increasing attention due to their potential as a class of nanomaterials with enhanced physicochemical properties tailored by the assembly structure. However, many key questions remain regarding the correlation between the dynamics of individual NPs and emerging superlattice patterns. Here we investigated the self-assembly of gold NPs by employing in situ transmission electron microscopy equipped with direct detection camera capabilities, which enabled us to track the rapid motion of individual nanoparticles in real time. By calculating the contributions of Brownian, van der Waals, hydrodynamic, and steric hindrance forces, we obtained a quantitative evaluation ...
Nanoparticles covered with surfactants are often used to study particle motion patterns and self-ass...
The combination of self-assembly and directed attachment of colloidal nanocrystals at fluid interfac...
Solution-phase self-assembly of anisotropic nanoparticles into complex 2D and 3D assemblies is one o...
Superlattice structures formed by nanoparticle (NP) self-assembly have attracted increasing attentio...
Self-assembly of gold nanoparticles (AuNPs) is an important growth mode for fabricating functional m...
Doctor of PhilosophyDepartment of PhysicsAmit ChakrabartiWe carry out Brownian Dynamics Simulations ...
Nanoparticle self-assembly has been well studied theoretically, but it remains challenging to direct...
Numerous mechanisms have been studied for chemical reactions to provide quantitative predictions on ...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
Nanoparticle self-assembly has been well studied theoretically, but it remains challenging to direct...
The mechanisms for nanoparticle self-assembly are often inferred from the morphology of the final na...
Ordered metal nanoparticle assemblies—superlattices—have captivated and stirred the imagination of s...
Self-assembled nanoparticles (NPs) in superlattices are in close contact. Their dense packing and th...
The properties and applications of metallic nanoparticles are inseparably connected not only to thei...
Self-assembly of nanoscale structures at liquid–solid interfaces occurs in a broad range of industri...
Nanoparticles covered with surfactants are often used to study particle motion patterns and self-ass...
The combination of self-assembly and directed attachment of colloidal nanocrystals at fluid interfac...
Solution-phase self-assembly of anisotropic nanoparticles into complex 2D and 3D assemblies is one o...
Superlattice structures formed by nanoparticle (NP) self-assembly have attracted increasing attentio...
Self-assembly of gold nanoparticles (AuNPs) is an important growth mode for fabricating functional m...
Doctor of PhilosophyDepartment of PhysicsAmit ChakrabartiWe carry out Brownian Dynamics Simulations ...
Nanoparticle self-assembly has been well studied theoretically, but it remains challenging to direct...
Numerous mechanisms have been studied for chemical reactions to provide quantitative predictions on ...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
Nanoparticle self-assembly has been well studied theoretically, but it remains challenging to direct...
The mechanisms for nanoparticle self-assembly are often inferred from the morphology of the final na...
Ordered metal nanoparticle assemblies—superlattices—have captivated and stirred the imagination of s...
Self-assembled nanoparticles (NPs) in superlattices are in close contact. Their dense packing and th...
The properties and applications of metallic nanoparticles are inseparably connected not only to thei...
Self-assembly of nanoscale structures at liquid–solid interfaces occurs in a broad range of industri...
Nanoparticles covered with surfactants are often used to study particle motion patterns and self-ass...
The combination of self-assembly and directed attachment of colloidal nanocrystals at fluid interfac...
Solution-phase self-assembly of anisotropic nanoparticles into complex 2D and 3D assemblies is one o...