International audienceQuantum strongly correlated systems that exhibit interesting features in condensed matter physics often need an unachievable temperature or pressure range in classical materials. One solution is to introduce a scaling factor, namely, the lattice parameter. Synthetic heterostructures named superlattices or supracrystals are synthesized by the assembling of colloidal atoms. These include semiconductors, metals, and insulators for the exploitation of their unique properties. Most of them are currently limited to dense packing. However, some of desired properties need to adjust the colloidal atoms neighboring number. Here, the current state of research in nondense packing is summarized, discussing the benefits, outlining p...
Colloidal nanocrystals can combine the benefits of inorganic semiconductors with size-tunable electr...
Self-assembly is a spontaneous process by which molecules to macroscopic entities assembled into one...
These experiments aim to create new colloidal crystalline materials, to study the assembly and therm...
International audienceQuantum strongly correlated systems that exhibit interesting features in conde...
Colloidal crystallisation is the only way to obtain three-dimensional ordered materials in which sem...
Building new materials with structures on the micron and nanoscale presents a grand challenge curren...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
International audienceSelf-assembly of colloidal nanoparticles into higher order superstructures is ...
New technologies call for the development of new materials. One new type of material with exciting e...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
Formation of binary superlattices (BNSLs) from colloidal nanocrystals (NCs) by self-assembly is a pr...
New materials can be fabricated using small scaled building blocks as a repetition unit. Nanoparticl...
In this introduction, i give an overview of the basic knowledge on quantum dots and nanoplatelets ne...
Self-assembly of soft matter is a phenomena that can be influenced by multiple factors including par...
Diamond lattices formed by atomic or colloidal elements exhibit remarkable functional properties. Ho...
Colloidal nanocrystals can combine the benefits of inorganic semiconductors with size-tunable electr...
Self-assembly is a spontaneous process by which molecules to macroscopic entities assembled into one...
These experiments aim to create new colloidal crystalline materials, to study the assembly and therm...
International audienceQuantum strongly correlated systems that exhibit interesting features in conde...
Colloidal crystallisation is the only way to obtain three-dimensional ordered materials in which sem...
Building new materials with structures on the micron and nanoscale presents a grand challenge curren...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
International audienceSelf-assembly of colloidal nanoparticles into higher order superstructures is ...
New technologies call for the development of new materials. One new type of material with exciting e...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
Formation of binary superlattices (BNSLs) from colloidal nanocrystals (NCs) by self-assembly is a pr...
New materials can be fabricated using small scaled building blocks as a repetition unit. Nanoparticl...
In this introduction, i give an overview of the basic knowledge on quantum dots and nanoplatelets ne...
Self-assembly of soft matter is a phenomena that can be influenced by multiple factors including par...
Diamond lattices formed by atomic or colloidal elements exhibit remarkable functional properties. Ho...
Colloidal nanocrystals can combine the benefits of inorganic semiconductors with size-tunable electr...
Self-assembly is a spontaneous process by which molecules to macroscopic entities assembled into one...
These experiments aim to create new colloidal crystalline materials, to study the assembly and therm...