Graphite is the primary source of electrodes used in both industrial production and basic research. Under electrical stress, graphitic electrodes can undergo degradations, delaminations, and aging processes due to the intercalation of chemical species between the graphene layers. All these events cause significant loss of performance and activity. Surface protection could represent the solution to avoid degradative intercalations, for example, by means of overlaid thin films, if suitable materials and conditions are met. In this contribution, we cover the current state-of-the-art about the surface protection of a highly oriented pyrolytic graphite electrode with small molecules. The use of porphyrins is discussed, considering aspects relate...
Aryl (Ar) modified carbon electrodes are of importance for a range of sensing and electrocatalysis a...
In this work, Fe(III)-poly-m-TAPP and Fe(III)-poly-p-TAPP films were deposited by electropolymerizat...
Self-assembled molecular films of two cobalt porphyrins with amine groups at different positions—(5,...
Graphite is the primary source of electrodes used in both industrial production and basic research. ...
Controlling the molecular arrangement of properly designed materials is the ultimate target of studi...
The development of graphene products promotes a renewed interest toward the use of graphite in addit...
Organic molecules have been proposed as promising candidates for electrode protection in acidic elec...
Organic molecules have been proposed as promising candidates for electrode protection in acidic elec...
Many researches have been devoted to rechargeable power generators that can store (but also release...
The nature and composition of the surface of pyrolytic graphite and the consequent possible effects,...
Chapter 1 provides an overview of the current literature regarding molecular level modification of c...
Porphyrins are heterocyclic macrocycles consisting of interconnected pyrrole subunits acting as liga...
The surface modification of graphene oxide (GO) is carried out via the supramolecular functionalizat...
Aryl (Ar) modified carbon electrodes are of importance for a range of sensing and electrocatalysis a...
In this work, Fe(III)-poly-m-TAPP and Fe(III)-poly-p-TAPP films were deposited by electropolymerizat...
Self-assembled molecular films of two cobalt porphyrins with amine groups at different positions—(5,...
Graphite is the primary source of electrodes used in both industrial production and basic research. ...
Controlling the molecular arrangement of properly designed materials is the ultimate target of studi...
The development of graphene products promotes a renewed interest toward the use of graphite in addit...
Organic molecules have been proposed as promising candidates for electrode protection in acidic elec...
Organic molecules have been proposed as promising candidates for electrode protection in acidic elec...
Many researches have been devoted to rechargeable power generators that can store (but also release...
The nature and composition of the surface of pyrolytic graphite and the consequent possible effects,...
Chapter 1 provides an overview of the current literature regarding molecular level modification of c...
Porphyrins are heterocyclic macrocycles consisting of interconnected pyrrole subunits acting as liga...
The surface modification of graphene oxide (GO) is carried out via the supramolecular functionalizat...
Aryl (Ar) modified carbon electrodes are of importance for a range of sensing and electrocatalysis a...
In this work, Fe(III)-poly-m-TAPP and Fe(III)-poly-p-TAPP films were deposited by electropolymerizat...
Self-assembled molecular films of two cobalt porphyrins with amine groups at different positions—(5,...