The use of ionic liquids that are solid at room temperature such as n-octyl-pyridinium hexafluorophosphate (nOPPF(6)) is shown to be advantageous in the fabrication of new form of biocomposite materials with attractive performance over other types of composites and pastes involving non-conductive binders. The resulting IL/graphite material brings new capabilities for electrochemical devices by combining the advantages of ILs and "bulk" composite electrodes. The electrocatalytic properties of the ILs are not impaired by their association with the graphite powder. The marked electrocatalytic activity towards hydrogen peroxide permits effective amperometric biosensing of glucose in connection with the incorporation of glucose oxidase within th...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
The interaction of carbon-based nanomaterials and ionic liquids (ILs) has been thoroughly exploited ...
WOS: 000336772600034This paper reports on the preparation and advantages of novel amperometric biose...
Ionic liquid functionalized graphene (IL-graphene) composite was synthesized successfully through an...
In this work, a polyelectrolyte-functionalized ionic liquid (PFIL) was firstly incorporated into a s...
Since 1992, when the room temperature ionic liquids (ILs) based on the 1-alkyl-3-methylimidazolium c...
Gold nanoparticles (GNPs) embedded in a Bucky gel consisting of carbon nanotubes (CNTs) and ionic li...
Two room temperature ionic liquids, 1-butyl-3-methylimidazolium bistriflimide and 1-butyl-3-methylim...
An excellent electrochemical sensing platform has been designed by combining the huge specific surfa...
Conductive cellulose-multiwalled carbonnanotube (MWCNT) matrix with a porous structure and good bioc...
In the present study, a glucose oxidase (GluOx) direct electron transfer was realized on an aminated...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
Conductive cellulose-multiwalled carbonnanotube (MWCNT) matrix with a porous structure and good bioc...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
The interaction of carbon-based nanomaterials and ionic liquids (ILs) has been thoroughly exploited ...
WOS: 000336772600034This paper reports on the preparation and advantages of novel amperometric biose...
Ionic liquid functionalized graphene (IL-graphene) composite was synthesized successfully through an...
In this work, a polyelectrolyte-functionalized ionic liquid (PFIL) was firstly incorporated into a s...
Since 1992, when the room temperature ionic liquids (ILs) based on the 1-alkyl-3-methylimidazolium c...
Gold nanoparticles (GNPs) embedded in a Bucky gel consisting of carbon nanotubes (CNTs) and ionic li...
Two room temperature ionic liquids, 1-butyl-3-methylimidazolium bistriflimide and 1-butyl-3-methylim...
An excellent electrochemical sensing platform has been designed by combining the huge specific surfa...
Conductive cellulose-multiwalled carbonnanotube (MWCNT) matrix with a porous structure and good bioc...
In the present study, a glucose oxidase (GluOx) direct electron transfer was realized on an aminated...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
Conductive cellulose-multiwalled carbonnanotube (MWCNT) matrix with a porous structure and good bioc...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
A newly modified electrode based on glassy carbon (GC) has been prepared and characterized electroch...
The interaction of carbon-based nanomaterials and ionic liquids (ILs) has been thoroughly exploited ...