International audienceA novel electronic nose system comprising functionalized β-cyclodextrin wrapped reduced graphene oxide (RGO) sensors with distinct ability of discrimination of a set of volatile organic compounds has been developed. Non-covalent modification of chemically functionalized cyclodextrin with RGO is carried out by using pyrene adamantane as a linker wherever necessary, in order to construct a supramolecular assembly. The chemical functionality on cyclodextrin is varied utilising the principle of selective chemical modification of cyclodextrin. In the present study, the combined benefits of the host–guest inclusion complex formation ability and tunable chemical functionality of cyclodextrin, as well as the high surface area ...
International audienceA new approach to enhance performances of a cyclodextrin-based fluorescent che...
In this study, a label-free graphene-based fluorescence probe used for detection of volatile organic...
International audienceThe synthesis of new biobased polyamides from different β-cyclodextrin monomer...
International audienceA novel electronic nose system comprising functionalized β-cyclodextrin wrappe...
This paper reports a procedure of building a functionalized reduced graphene oxide (rGO) library and...
Supramolecular chemistry, although focused mainly on noncovalent intermolecular and intramolecular i...
Sensing volatile organic compounds (VOC) is a promising approach in particular for the development o...
Graphene has been shown to have an extraordinary set of electronic properties and its chemical affin...
The present thesis work represents a novel and reliable strategy to develop highly sensitive, highly...
Surprisingly few details have been reported in the literature that help the experimentalist to deter...
The paper presents the tuning of sensitivity and selectivity performance of volatile organic compoun...
This paper presents a novel chemical sensor that combines an organic, floating gate field-effect tra...
The development of a sophisticated electronic nose (E-nose) system would open vast markets spanning ...
In the wide palette of chemoresistive sensing materials, hybrid nanocomposites have quickly gained ...
International audienceA new approach to enhance performances of a cyclodextrin-based fluorescent che...
In this study, a label-free graphene-based fluorescence probe used for detection of volatile organic...
International audienceThe synthesis of new biobased polyamides from different β-cyclodextrin monomer...
International audienceA novel electronic nose system comprising functionalized β-cyclodextrin wrappe...
This paper reports a procedure of building a functionalized reduced graphene oxide (rGO) library and...
Supramolecular chemistry, although focused mainly on noncovalent intermolecular and intramolecular i...
Sensing volatile organic compounds (VOC) is a promising approach in particular for the development o...
Graphene has been shown to have an extraordinary set of electronic properties and its chemical affin...
The present thesis work represents a novel and reliable strategy to develop highly sensitive, highly...
Surprisingly few details have been reported in the literature that help the experimentalist to deter...
The paper presents the tuning of sensitivity and selectivity performance of volatile organic compoun...
This paper presents a novel chemical sensor that combines an organic, floating gate field-effect tra...
The development of a sophisticated electronic nose (E-nose) system would open vast markets spanning ...
In the wide palette of chemoresistive sensing materials, hybrid nanocomposites have quickly gained ...
International audienceA new approach to enhance performances of a cyclodextrin-based fluorescent che...
In this study, a label-free graphene-based fluorescence probe used for detection of volatile organic...
International audienceThe synthesis of new biobased polyamides from different β-cyclodextrin monomer...