When organic molecules are tethered onto non-spherical nanoparticles, their chemical properties depend on the particles' local curvature and shape. Based on this observation, we show here that it is possible to engineer chemical patchiness across the surface of a non-spherical nanoparticle using a single chemical species. In particular, when acidic ligands are used, regions of the particle surface with different curvature become charged at different pH values of the surrounding solution. This interplay between particle shape and local electrostatics allows for fine control over nanoscale self-assembly leading to structures with varying degrees of complexity. These structures range from particle cross-stacks to open-lattice crystals, th...
The formation of structures from a disordered starting point is a common feature in biological syste...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
The capacity to respond or adapt to environmental changes is an intrinsic property of living systems...
Properties of self-assembled monolayers (SAMs) can be tailored by the curvature of the underlying su...
Using coarse-grained molecular dynamics simulations, we investigate the surface patterns of charged ...
Patchy colloidal particles are promising candidates for building blocks in directed self-assembly. T...
International audienceSemi-conducting nanoplatelets are two-dimensional nanoparticles whose thicknes...
Chemically and topographically patterned nanoparticles (NPs) with dimensions on the order of tens of...
Patchy colloids are promising candidates for building blocks in directed self-assembly. To be succes...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
Self-assembly of soft matter is a phenomena that can be influenced by multiple factors including par...
Nano-structuring of the surface caused by adsorption of molecules or atoms and by the reaction of su...
Nature designs chemotactic supramolecular structures that can selectively bind specific groups prese...
International audienceMetallic nanoparticles are highly reactive objects, often used for their catal...
The shape control of nanoparticles constitutes one of the main challenges in today’s nanotechnology....
The formation of structures from a disordered starting point is a common feature in biological syste...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
The capacity to respond or adapt to environmental changes is an intrinsic property of living systems...
Properties of self-assembled monolayers (SAMs) can be tailored by the curvature of the underlying su...
Using coarse-grained molecular dynamics simulations, we investigate the surface patterns of charged ...
Patchy colloidal particles are promising candidates for building blocks in directed self-assembly. T...
International audienceSemi-conducting nanoplatelets are two-dimensional nanoparticles whose thicknes...
Chemically and topographically patterned nanoparticles (NPs) with dimensions on the order of tens of...
Patchy colloids are promising candidates for building blocks in directed self-assembly. To be succes...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
Self-assembly of soft matter is a phenomena that can be influenced by multiple factors including par...
Nano-structuring of the surface caused by adsorption of molecules or atoms and by the reaction of su...
Nature designs chemotactic supramolecular structures that can selectively bind specific groups prese...
International audienceMetallic nanoparticles are highly reactive objects, often used for their catal...
The shape control of nanoparticles constitutes one of the main challenges in today’s nanotechnology....
The formation of structures from a disordered starting point is a common feature in biological syste...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
The capacity to respond or adapt to environmental changes is an intrinsic property of living systems...