The design and development of multifunctional composite materials from artificial nano-constituents is one of the most compelling current research areas. This drive to improve over nature and produce 'meta-materials' has met with some success, but results have proven limited with regards to both the demonstration of synergistic functionalities and in the ability to manipulate the material properties post-fabrication and in situ. Here, magnetic nanoparticles (MNPs) and semiconducting quantum dots (QDs) are co-assembled in a nematic liquid crystalline (LC) matrix, forming composite structures in which the emission intensity of the quantum dots is systematically and reversibly controlled with a small applied magnetic field (<100 mT). This m...
International audienceThe design of high-performance energy-converting materials is an essential ste...
The effect of magnetic nanoparticles size and concentration on nematic liquid crystal (NLC) behavior...
As a result of their intrinsic orientational order, soft elasticity, and facile response to external...
Surface modification is a versatile and effective route towards improving functional and structural ...
The ability to fabricate new materials using nanomaterials as building blocks, and with meta functio...
The interactions of semiconducting quantum dots (QDs) and Fe3O4 magnetic nanoparticles (MNPs) co-ass...
The isotropic to nematic liquid crystal (LC) phase transition is used to create organized assemblies...
Magnetic nanoparticle have been intensively investigated for in vitro and in vivo applications such ...
Liquid crystal nanoscience, a field exploring the mutually beneficial combination of the unique prop...
Liquid crystal nanoscience, a field exploring the mutually beneficial combination of the unique prop...
We here report on the optical, alignment and electro-optic properties of a nematic liquid crystal af...
We here report on the alignment and electro-optic properties of nematic liquid crystals (LCs) either...
Quantum dot/liquid crystal nano-composites are promising new materials for a variety of applications...
The interaction of semiconducting quantum dot nanoparticles (QDs) within thermotropic liquid crystal...
This work is focused on synthesis of highly luminescent hybrid CdSe/CdS ”core/shell” quantum dots (Q...
International audienceThe design of high-performance energy-converting materials is an essential ste...
The effect of magnetic nanoparticles size and concentration on nematic liquid crystal (NLC) behavior...
As a result of their intrinsic orientational order, soft elasticity, and facile response to external...
Surface modification is a versatile and effective route towards improving functional and structural ...
The ability to fabricate new materials using nanomaterials as building blocks, and with meta functio...
The interactions of semiconducting quantum dots (QDs) and Fe3O4 magnetic nanoparticles (MNPs) co-ass...
The isotropic to nematic liquid crystal (LC) phase transition is used to create organized assemblies...
Magnetic nanoparticle have been intensively investigated for in vitro and in vivo applications such ...
Liquid crystal nanoscience, a field exploring the mutually beneficial combination of the unique prop...
Liquid crystal nanoscience, a field exploring the mutually beneficial combination of the unique prop...
We here report on the optical, alignment and electro-optic properties of a nematic liquid crystal af...
We here report on the alignment and electro-optic properties of nematic liquid crystals (LCs) either...
Quantum dot/liquid crystal nano-composites are promising new materials for a variety of applications...
The interaction of semiconducting quantum dot nanoparticles (QDs) within thermotropic liquid crystal...
This work is focused on synthesis of highly luminescent hybrid CdSe/CdS ”core/shell” quantum dots (Q...
International audienceThe design of high-performance energy-converting materials is an essential ste...
The effect of magnetic nanoparticles size and concentration on nematic liquid crystal (NLC) behavior...
As a result of their intrinsic orientational order, soft elasticity, and facile response to external...