International audienceTwo cooperative and complementary components such as gFe2O3/Au nanoparticles (NPs) are used to grow binary superlattices (BNSLs). The effects of different parameters including concentration ratio of colloidal solutions, effective size ratio of NPs, deposition temperature and type of solvent on the formation of BNSLs are discussed. A systematic study of the effect of these parameters is performed to determine the driving forces underlying the BNSL formation. We show that by using the same batch of particles, the control of the various parameters gives rise to a large diversity of crystalline structures. In addition, thanks to their long-range organization, the magnetic properties of g-Fe2O3/Au NPs binary superlattices a...
Colloidal binary supracrystals (SCs) possessing tunable and ordered assembly of two different types ...
The kinetics and intricate interactions governing the growth of 3D single nanoparticle (NP) superlat...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
International audienceTwo cooperative and complementary components such as gFe2O3/Au nanoparticles (...
Noble metal nanoparticles (NPs) have attracted a great interest last years in various domains due to...
International audienceHere, it is shown that binary superlattices of Co/Ag nanocrystals with the sam...
The self-assembly of two sizes of spherical nanocrystals has revealed a surprisingly diverse library...
Équipe 401 : Nanomatériaux pour la vie et développement durableInternational audienceSelf-assembly o...
International audienceIn the present article, the successful coassembly of spherical 6.2 nm maghemit...
Here, Co/Ag binary nanoparticle superlattices were engineered. It is demonstrated that the Ag/Co nan...
Assembly of small building blocks such as atoms, molecules and nanoparticles into macroscopic struct...
Self-assembled binary nanocrystal superlattices (BNSLs) represent a versatile bottom-up approach tow...
The dipolar interactions in monolayer and multilayer assemblies of iron oxide nanoparticles have bee...
Colloidal crystallisation is the only way to obtain three-dimensional ordered materials in which sem...
Here, it is shown that binary superlattices of Co/Ag nanocrystals with the same size, surface coatin...
Colloidal binary supracrystals (SCs) possessing tunable and ordered assembly of two different types ...
The kinetics and intricate interactions governing the growth of 3D single nanoparticle (NP) superlat...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
International audienceTwo cooperative and complementary components such as gFe2O3/Au nanoparticles (...
Noble metal nanoparticles (NPs) have attracted a great interest last years in various domains due to...
International audienceHere, it is shown that binary superlattices of Co/Ag nanocrystals with the sam...
The self-assembly of two sizes of spherical nanocrystals has revealed a surprisingly diverse library...
Équipe 401 : Nanomatériaux pour la vie et développement durableInternational audienceSelf-assembly o...
International audienceIn the present article, the successful coassembly of spherical 6.2 nm maghemit...
Here, Co/Ag binary nanoparticle superlattices were engineered. It is demonstrated that the Ag/Co nan...
Assembly of small building blocks such as atoms, molecules and nanoparticles into macroscopic struct...
Self-assembled binary nanocrystal superlattices (BNSLs) represent a versatile bottom-up approach tow...
The dipolar interactions in monolayer and multilayer assemblies of iron oxide nanoparticles have bee...
Colloidal crystallisation is the only way to obtain three-dimensional ordered materials in which sem...
Here, it is shown that binary superlattices of Co/Ag nanocrystals with the same size, surface coatin...
Colloidal binary supracrystals (SCs) possessing tunable and ordered assembly of two different types ...
The kinetics and intricate interactions governing the growth of 3D single nanoparticle (NP) superlat...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...