Recent studies have shown that the electrochemical oxidation of purine nucleobases (adenine and geaoine) at graphite electrodes is strongly dependent on the orientation of graphene sheets. their size and mutual distribution on the electrode surface. Edges and defects of graphene sheets affect the kinetics of oxidation processes, basal planes support the adsorption processes The aim of this study is to determine how model carbon nanomaterials including graphene, single-walled or multi-wailed carbon nanotubes. carbon nanofibres and mesoporous graphene affect the electrochemical oxidation or purine nuclebases on screen-printed carbon electrodes modified by these nanostructures in solution without and in the presence of copper
High surface-to-volume ratio, high conductivity and electrocatalytic properties are some of the most...
The basis of the electrocatalytic nature of multi-wall carbon nanotubes is suggested to reside in el...
Carbon, and particularly graphite in its various forms, is an attractive electrode material. Two are...
The electrochemical oxidation of guanine is studied in aqueous media at various carbon electrodes. S...
The electrochemical behavior of nitrogen bases and their derivatives is studied on electrodes modifi...
Purine nucleobases, guanine and adenine, are known electroactive compounds which get oxidized over t...
Artículo de publicación ISIA comparative study about the electrochemical response of glassy carbon e...
Glassy-carbon electrodes (GCEs) are modified with preoxidized multiwalled carbon nanotubes (CNTs). A...
This article investigates the analytical performance of double-, few- and multi-layer graphene upon ...
The oxidations of NADH, epinephrine, and norepinephrine are studied using carbon nanotube and graphi...
Understanding the oxidation of the purines adenine and guanine is primary to improving electrochemic...
The graphene combined with New Fuchsin (NF) to prepare graphene-NF modified electrode. Graphene obta...
The electrocatalytic properties of multi-walled carbon nanotube modified electrodes toward the oxida...
Single-walled carbon nanotubes (SWCNT) modified disposable graphite electrodes (SWCNT-PGEs) were inv...
A review. Carbon, and particularly graphite in its various forms, is an attractive electrode materia...
High surface-to-volume ratio, high conductivity and electrocatalytic properties are some of the most...
The basis of the electrocatalytic nature of multi-wall carbon nanotubes is suggested to reside in el...
Carbon, and particularly graphite in its various forms, is an attractive electrode material. Two are...
The electrochemical oxidation of guanine is studied in aqueous media at various carbon electrodes. S...
The electrochemical behavior of nitrogen bases and their derivatives is studied on electrodes modifi...
Purine nucleobases, guanine and adenine, are known electroactive compounds which get oxidized over t...
Artículo de publicación ISIA comparative study about the electrochemical response of glassy carbon e...
Glassy-carbon electrodes (GCEs) are modified with preoxidized multiwalled carbon nanotubes (CNTs). A...
This article investigates the analytical performance of double-, few- and multi-layer graphene upon ...
The oxidations of NADH, epinephrine, and norepinephrine are studied using carbon nanotube and graphi...
Understanding the oxidation of the purines adenine and guanine is primary to improving electrochemic...
The graphene combined with New Fuchsin (NF) to prepare graphene-NF modified electrode. Graphene obta...
The electrocatalytic properties of multi-walled carbon nanotube modified electrodes toward the oxida...
Single-walled carbon nanotubes (SWCNT) modified disposable graphite electrodes (SWCNT-PGEs) were inv...
A review. Carbon, and particularly graphite in its various forms, is an attractive electrode materia...
High surface-to-volume ratio, high conductivity and electrocatalytic properties are some of the most...
The basis of the electrocatalytic nature of multi-wall carbon nanotubes is suggested to reside in el...
Carbon, and particularly graphite in its various forms, is an attractive electrode material. Two are...