Graphite is the primary sorce of electrodes used in both industrial production and basic research. Under electrical stress graphitic electrodes can undergo degradations, delmainations 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 mean of overlayed thin films, if suitable materials and conditions are met. In this contribution, we will cover the current state-of-the-art about the surface protection of a higly oriented pyrolytic graphite (HOPG) electrode with small molecules. The use of porphirins will be discussed, considering aspects related to deposition protocols, surface interactions and protections and the morphological and chemical stabilities of the molecules. Finally it will be presented a short overview on the synthesis of porphyrins evidencing the multifacet potentiality of this class of compounds as protecting agents.

Exploring the role of porphyrin films in graphite electrode protection

A Bossi;M Penconi;
2018

Abstract

Graphite is the primary sorce of electrodes used in both industrial production and basic research. Under electrical stress graphitic electrodes can undergo degradations, delmainations 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 mean of overlayed thin films, if suitable materials and conditions are met. In this contribution, we will cover the current state-of-the-art about the surface protection of a higly oriented pyrolytic graphite (HOPG) electrode with small molecules. The use of porphirins will be discussed, considering aspects related to deposition protocols, surface interactions and protections and the morphological and chemical stabilities of the molecules. Finally it will be presented a short overview on the synthesis of porphyrins evidencing the multifacet potentiality of this class of compounds as protecting agents.
2018
Istituto di Scienze e Tecnologie Molecolari - ISTM - Sede Milano
9780128097397
Graphite electrode
electrode protection
anion intercalation
anodic oxidation
sulfuric electrolyte
surface blistering
carbon detriment
electrochemistry
porphyrins
protecting agents
electrochemical atomic force microscopy
EC-AFM
electrochemical scanning tunnelling microscopy
physical vapour deposition
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/338301
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