Cataloged from PDF version of article.The combination of nanomaterials and conducting polymers attracted remarkable attention for development of new immobilization matrices for enzymes. Hereby, an efficient surface design was investigated by modifying the graphite rod electrode surfaces with one-step electrospun nylon 6,6 nanofibers or 4% (w/w) multiwalled carbon nanotubes (MWCNTs) incorporating nylon 6,6 nanofibers (nylon 6,6/4MWCNT). High-resolution transmission electron microscopy study confirmed the successful incorporation of the MWCNTs into the nanofiber matrix for nylon 6,6/4MWCNT sample. Then, these nanofibrous surfaces were coated with a conducting polymer, (poly-4-(4,7-di(thiophen-2-yl)-1H-benzo[d]imidazol-2-yl) benzaldehyde) (PBI...
The evolution of electrochemical biosensors reflects a simplification and enhancement of the transdu...
International audienceIn this paper, we report a novel and efficient bioactive surface nanostructura...
International audienceIn this paper, we report a novel and efficient bioactive surface nanostructura...
WOS: 000334572800080PubMed ID: 24660809The combination of nanomaterials and conducting polymers attr...
PubMed ID: 24660809The combination of nanomaterials and conducting polymers attracted remarkable att...
The combination of nanomaterials and conducting polymers attracted remarkable attention for developm...
The combination of nanomaterials and conducting polymers attracted remarkable attention for developm...
The combination of nanomaterials and conducting polymers attracted remarkable attention for developm...
WOS: 000431786800059The evolution of electrochemical biosensors reflects a simplification and enhanc...
Les travaux présentés dans ce manuscrit décrivent le développement de trois supports innovants basés...
Les travaux présentés dans ce manuscrit décrivent le développement de trois supports innovants basés...
The work detailed within this manuscript describes the development of three novel efficient electroa...
The work detailed within this manuscript describes the development of three novel efficient electroa...
The evolution of electrochemical biosensors reflects a simplification and enhancement of the transdu...
The evolution of electrochemical biosensors reflects a simplification and enhancement of the transdu...
The evolution of electrochemical biosensors reflects a simplification and enhancement of the transdu...
International audienceIn this paper, we report a novel and efficient bioactive surface nanostructura...
International audienceIn this paper, we report a novel and efficient bioactive surface nanostructura...
WOS: 000334572800080PubMed ID: 24660809The combination of nanomaterials and conducting polymers attr...
PubMed ID: 24660809The combination of nanomaterials and conducting polymers attracted remarkable att...
The combination of nanomaterials and conducting polymers attracted remarkable attention for developm...
The combination of nanomaterials and conducting polymers attracted remarkable attention for developm...
The combination of nanomaterials and conducting polymers attracted remarkable attention for developm...
WOS: 000431786800059The evolution of electrochemical biosensors reflects a simplification and enhanc...
Les travaux présentés dans ce manuscrit décrivent le développement de trois supports innovants basés...
Les travaux présentés dans ce manuscrit décrivent le développement de trois supports innovants basés...
The work detailed within this manuscript describes the development of three novel efficient electroa...
The work detailed within this manuscript describes the development of three novel efficient electroa...
The evolution of electrochemical biosensors reflects a simplification and enhancement of the transdu...
The evolution of electrochemical biosensors reflects a simplification and enhancement of the transdu...
The evolution of electrochemical biosensors reflects a simplification and enhancement of the transdu...
International audienceIn this paper, we report a novel and efficient bioactive surface nanostructura...
International audienceIn this paper, we report a novel and efficient bioactive surface nanostructura...