Electrodeposition of platinum on polytyramine-modified electrodes for electrocatalytic applications

Cyclic voltammetry was used in order to deposit conducting polytyramine (PTy) on graphite substrates. In acidic media, ca. 40 deposition cycles resulted in the formation of stable polymer films with reasonably good resistivity. Electrochemical deposition of platinum on the PTy-covered graphite subst...

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Published in:Electrochimica acta Vol. 54; no. 12; pp. 3316 - 3319
Main Authors: Spătaru, Tanţa, Marcu, Maria, Banu, Alexandra, Roman, Eugen, Spătaru, Nicolae
Format: Journal Article
Language:English
Published: Kidlington Elsevier Ltd 30-04-2009
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Abstract Cyclic voltammetry was used in order to deposit conducting polytyramine (PTy) on graphite substrates. In acidic media, ca. 40 deposition cycles resulted in the formation of stable polymer films with reasonably good resistivity. Electrochemical deposition of platinum on the PTy-covered graphite substrate allowed us to obtain a composite material that exhibits, for a platinum loading of 0.34 mg cm −2, a specific electrochemically active surface area of the Pt particles of ca. 57 m 2 g −1. Good electrocatalytic activity of this electrode material for phenol oxidation in acidic media was found, and the results suggested that, when deposited as small particles in a PTy matrix, platinum is less sensitive to deactivation by phenol oxidation polymeric products.
AbstractList Cyclic voltammetry was used in order to deposit conducting polytyramine (PTy) on graphite substrates. In acidic media, ca. 40 deposition cycles resulted in the formation of stable polymer films with reasonably good resistivity. Electrochemical deposition of platinum on the PTy-covered graphite substrate allowed us to obtain a composite material that exhibits, for a platinum loading of 0.34 mg cm-2, a specific electrochemically active surface area of the Pt particles of ca. 57 m2 g-1. Good electrocatalytic activity of this electrode material for phenol oxidation in acidic media was found, and the results suggested that, when deposited as small particles in a PTy matrix, platinum is less sensitive to deactivation by phenol oxidation polymeric products.
Cyclic voltammetry was used in order to deposit conducting polytyramine (PTy) on graphite substrates. In acidic media, ca. 40 deposition cycles resulted in the formation of stable polymer films with reasonably good resistivity. Electrochemical deposition of platinum on the PTy-covered graphite substrate allowed us to obtain a composite material that exhibits, for a platinum loading of 0.34 mg cm −2, a specific electrochemically active surface area of the Pt particles of ca. 57 m 2 g −1. Good electrocatalytic activity of this electrode material for phenol oxidation in acidic media was found, and the results suggested that, when deposited as small particles in a PTy matrix, platinum is less sensitive to deactivation by phenol oxidation polymeric products.
Author Marcu, Maria
Spătaru, Nicolae
Roman, Eugen
Spătaru, Tanţa
Banu, Alexandra
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Issue 12
Keywords Phenol oxidation
Polytyramine
Composite material
Platinum deposition
Aromatic polymer
Transition metal
Ether polymer
Functional polymer
Sulfuric acid
Electrodes
Electrocatalysis
Phenylene derivative polymer
Amine polymer
Platinum
Graphite
Phenols
Electrodeposition
Oxidation
Electrochemical reaction
Application
Modified material
Language English
License CC BY 4.0
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Snippet Cyclic voltammetry was used in order to deposit conducting polytyramine (PTy) on graphite substrates. In acidic media, ca. 40 deposition cycles resulted in the...
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SubjectTerms Chemistry
Composite material
Electrochemistry
Electrodeposition
Exact sciences and technology
General and physical chemistry
Phenol oxidation
Platinum deposition
Polytyramine
Study of interfaces
Title Electrodeposition of platinum on polytyramine-modified electrodes for electrocatalytic applications
URI https://dx.doi.org/10.1016/j.electacta.2008.12.050
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