Hybrid silica-organic nanohelices are used to organize a large variety of nonchiral small organic molecules or inorganic anions to nanometer-sized assemblies. Such chiral organization of achiral molecules induces chiroptical properties as detected by vibrational or electronic circular dichroism (CD), as well as from circularly polarized luminescence (CPL)
Hybrid nanohelices were obtained from silicification of self-assemblies of gemini surfactants with t...
The acquisition of strong chiroptical activity has revolutionized the field of plasmonics, granting ...
Nanocorrals created by scanning probe lithography on covalently modified graphite surfaces are used ...
Hybrid silica-organic nanohelices are used to organize a large variety of nonchiral small organic mo...
International audienceHybrid silica-organic nanohelices are used to organize a large variety of nonc...
International audienceCircularly polarized luminescence (CPL) can be generated either from fluoresce...
We here report a molecule with chiral recognition capability by a mechanism of complexation-induced ...
Chirality is becoming increasingly important in the design of organic materials with functional prop...
Synthesis of chiral inorganic or hybrid nanomaterials through sol-gel transcription of chiral organi...
In this paper, chiral intermediate phases composed of two achiral molecules are fabricated by utiliz...
Circularly polarized (CP) light has shown great potential in quantum computing, optical communicatio...
Constructing artificial helical structures through hierarchical self-assembly and exploring the unde...
The self-assembly of a chiral perylene bisimide bichromophoric derivative possessing a 1,1′-binaphth...
Chirality, familiar to all chemists, is usually applied to molecules or assemblies of molecules and ...
Chiral self-assembled organic nanoparticles with circularly polarized luminescence (CPL) properties ...
Hybrid nanohelices were obtained from silicification of self-assemblies of gemini surfactants with t...
The acquisition of strong chiroptical activity has revolutionized the field of plasmonics, granting ...
Nanocorrals created by scanning probe lithography on covalently modified graphite surfaces are used ...
Hybrid silica-organic nanohelices are used to organize a large variety of nonchiral small organic mo...
International audienceHybrid silica-organic nanohelices are used to organize a large variety of nonc...
International audienceCircularly polarized luminescence (CPL) can be generated either from fluoresce...
We here report a molecule with chiral recognition capability by a mechanism of complexation-induced ...
Chirality is becoming increasingly important in the design of organic materials with functional prop...
Synthesis of chiral inorganic or hybrid nanomaterials through sol-gel transcription of chiral organi...
In this paper, chiral intermediate phases composed of two achiral molecules are fabricated by utiliz...
Circularly polarized (CP) light has shown great potential in quantum computing, optical communicatio...
Constructing artificial helical structures through hierarchical self-assembly and exploring the unde...
The self-assembly of a chiral perylene bisimide bichromophoric derivative possessing a 1,1′-binaphth...
Chirality, familiar to all chemists, is usually applied to molecules or assemblies of molecules and ...
Chiral self-assembled organic nanoparticles with circularly polarized luminescence (CPL) properties ...
Hybrid nanohelices were obtained from silicification of self-assemblies of gemini surfactants with t...
The acquisition of strong chiroptical activity has revolutionized the field of plasmonics, granting ...
Nanocorrals created by scanning probe lithography on covalently modified graphite surfaces are used ...