Photo-responsive multifunctional nanomaterials are receiving considerable attention for biological applications because of their unique properties. The functionalization of the surface of carbon nanotubes (CNTs) and graphene, among other carbon based nanomaterials, with molecular switches that exhibit reversible transformations between two or more isomers in response to different kind of external stimuli, such as electromagnetic radiation, temperature and pH, has allowed the control of the optical and electrical properties of the nanomaterial. Light-controlled molecular switches, such as azobenzene and spiropyran, have attracted a lot of attention for nanomaterial's functionalization because of the remote modulation of their physicochemical...
In recent years, there has been a rapid growth in studies of the optoelectronic properties of graphe...
The design of multifunctional nanofluids is highly desirable for biomedical therapy/cellular imaging...
This thesis is focused on the immobilization of suitable photo- and redoxactive molecular scaffolds ...
Photo-responsive multifunctional nanomaterials are receiving considerable attention for biological a...
Photo-responsive multifunctional nanomaterials are receiving considerable attention for biological a...
Carbon-based nanomaterials serve as a type of smart material for photo-triggered disease theranostic...
Carbon-based nanomaterials serve as a type of smart material for photo-triggered disease theranostic...
Chemical functionalization of atomically thin nanostructures presents a promising strategy to create...
Chemical functionalization of atomically thin nanostructures presents a promising strategy to create...
This work was supported by the European Commission through the Graphene Flagship (GA-604391), the FP...
THESIS 9710Over the last years the applications of chemically modified carbon nanotubes have conside...
This work was supported by the European Commission through the Graphene Flagship (GA-604391), the FP...
This work was supported by the European Commission through the Graphene Flagship (GA-604391), the FP...
Tuning the microstructure, conductance, band gap of a single molecule with an external stimuli such ...
Stimuli-responsive materials, also known as smart materials, can change their structure and, consequ...
In recent years, there has been a rapid growth in studies of the optoelectronic properties of graphe...
The design of multifunctional nanofluids is highly desirable for biomedical therapy/cellular imaging...
This thesis is focused on the immobilization of suitable photo- and redoxactive molecular scaffolds ...
Photo-responsive multifunctional nanomaterials are receiving considerable attention for biological a...
Photo-responsive multifunctional nanomaterials are receiving considerable attention for biological a...
Carbon-based nanomaterials serve as a type of smart material for photo-triggered disease theranostic...
Carbon-based nanomaterials serve as a type of smart material for photo-triggered disease theranostic...
Chemical functionalization of atomically thin nanostructures presents a promising strategy to create...
Chemical functionalization of atomically thin nanostructures presents a promising strategy to create...
This work was supported by the European Commission through the Graphene Flagship (GA-604391), the FP...
THESIS 9710Over the last years the applications of chemically modified carbon nanotubes have conside...
This work was supported by the European Commission through the Graphene Flagship (GA-604391), the FP...
This work was supported by the European Commission through the Graphene Flagship (GA-604391), the FP...
Tuning the microstructure, conductance, band gap of a single molecule with an external stimuli such ...
Stimuli-responsive materials, also known as smart materials, can change their structure and, consequ...
In recent years, there has been a rapid growth in studies of the optoelectronic properties of graphe...
The design of multifunctional nanofluids is highly desirable for biomedical therapy/cellular imaging...
This thesis is focused on the immobilization of suitable photo- and redoxactive molecular scaffolds ...