Nanoporous carbon materials are highly important materials for a wide array of applications. Here we show that nanoporous carbon can act as highly active materials for electrochemical sensing. We observed that nanoporous carbon material exhibits a faster heterogeneous electron transfer than graphite and pure carbon nanotubes. Nanoporous carbon exhibits a superior electrochemical performance for sensing of important biomarkers such as dopamine, ascorbic acid, uric acid, NADH, DNA bases, and forensic-related compounds such as nitroaromatic explosives. Nanoporezní materiály na bázi uhlíku nacházejí využití v mnoha oblastech. V tomto článku ukážeme jejich výhody pro použití v oblasti electrochemického stanovení látek. Heterogenní přenos elek...
Carbonized electrode materials were prepared from carbonization of graphene nanoribbon (GNR) / coal ...
Fabrication of nanoporous electrodes for sensing applications By Md Rezaul Karim Khan, Ph.D. A diss...
This work reports the advantages of using glassy carbon electrodes modified with multiwall carbon na...
Nanoporous carbons represent well defined materials with large surface area, defined porosity, high ...
High surface-to-volume ratio, high conductivity and electrocatalytic properties are some of the most...
The role of the electrode nanoporosity in electroanalytical processes is discussed and specific phen...
Carbon's electrochemistry depends on its type and microstructure, and how these affect the electrode...
By combining different allotropic forms of carbon at the nanoscale it is possible to fabricate tailo...
The density of electronic states (DOS) is an intrinsic electronic property that works conclusively i...
In this work, we have developed a novel approach that fabricating carbon nanoelectrode ensembles (c...
Carbon-based electrodes have been widely used in electroanalysis for more than half a century, but t...
Carbon has long been applied as an electrochemical sensing interface owing to its unique electrochem...
A realistic molecular description is developed for electrosorption in nanoporous carbon electrodes, ...
In recent years, society has paid great attention to health care and environmental safety. Thus, res...
This review summarizes the progress that has been made in the past ten years in the field of electro...
Carbonized electrode materials were prepared from carbonization of graphene nanoribbon (GNR) / coal ...
Fabrication of nanoporous electrodes for sensing applications By Md Rezaul Karim Khan, Ph.D. A diss...
This work reports the advantages of using glassy carbon electrodes modified with multiwall carbon na...
Nanoporous carbons represent well defined materials with large surface area, defined porosity, high ...
High surface-to-volume ratio, high conductivity and electrocatalytic properties are some of the most...
The role of the electrode nanoporosity in electroanalytical processes is discussed and specific phen...
Carbon's electrochemistry depends on its type and microstructure, and how these affect the electrode...
By combining different allotropic forms of carbon at the nanoscale it is possible to fabricate tailo...
The density of electronic states (DOS) is an intrinsic electronic property that works conclusively i...
In this work, we have developed a novel approach that fabricating carbon nanoelectrode ensembles (c...
Carbon-based electrodes have been widely used in electroanalysis for more than half a century, but t...
Carbon has long been applied as an electrochemical sensing interface owing to its unique electrochem...
A realistic molecular description is developed for electrosorption in nanoporous carbon electrodes, ...
In recent years, society has paid great attention to health care and environmental safety. Thus, res...
This review summarizes the progress that has been made in the past ten years in the field of electro...
Carbonized electrode materials were prepared from carbonization of graphene nanoribbon (GNR) / coal ...
Fabrication of nanoporous electrodes for sensing applications By Md Rezaul Karim Khan, Ph.D. A diss...
This work reports the advantages of using glassy carbon electrodes modified with multiwall carbon na...