Repository logo
Log In(current)
  • Inicio
  • Personal de Investigación
  • Unidad Académica
  • Publicaciones
  • Colecciones
    Datos de Investigacion Divulgacion cientifica Personal de Investigacion Protecciones Proyectos Externos Proyectos Internos Publicaciones Tesis
  1. Home
  2. Universidad de Santiago de Chile
  3. Publicaciones Abiertas
  4. Tuning the Covering on Gold Surfaces by Grafting Amino-Aryl Films Functionalized with Fe(Ii) Phthalocyanine: Performance on the Electrocatalysis of Oxygen Reduction
Details

Tuning the Covering on Gold Surfaces by Grafting Amino-Aryl Films Functionalized with Fe(Ii) Phthalocyanine: Performance on the Electrocatalysis of Oxygen Reduction

Journal
Molecules
ISSN
1420-3049
Date Issued
2021
Author(s)
Pavez-Irrazabal, J  
Pavez-Irrazabal, J  
Silva-Rojas, J  
Silva-Rojas, J  
Silva-Molina, C  
Silva-Molina, C  
Gomez-San Martin, A  
Gomez-San Martin, A  
Agurto-Doren, N  
Agurto-Doren, N  
Olguín-Choupay, C  
Olguín-Choupay, C  
Santander-Nelli, M  
Santander-Nelli, M  
Abstract
Current selective modification methods, coupled with functionalization through organic or inorganic molecules, are crucial for designing and constructing custom-made molecular materials that act as electroactive interfaces. A versatile method for derivatizing surfaces is through an aryl diazonium salt reduction reaction (DSRR). A prominent feature of this strategy is that it can be carried out on various materials. Using the DSRR, we modified gold surface electrodes with 4aminebenzene from 4-nitrobenzenediazonium tetrafluoroborate (NBTF), regulating the deposited mass of the aryl film to achieve covering control on the electrode surface. We got different degrees of covering: monolayer, intermediate, and multilayer. Afterwards, the ArNO2 end groups were electrochemically reduced to ArNH2 and functionalized with Fe(II)-Phthalocyanine to study the catalytic performance for the oxygen reduction reaction (ORR). The thickness of the electrode covering determines its response in front of ORR. Interestingly, the experimental results showed that an intermediate covering film presents a better electrocatalytic response for ORR, driving the reaction by a four-electron pathway. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
Get Involved!
  • Source Code
  • Documentation
  • Slack Channel
Make it your own

DSpace-CRIS can be extensively configured to meet your needs. Decide which information need to be collected and available with fine-grained security. Start updating the theme to match your Institution's web identity.

Need professional help?

The original creators of DSpace-CRIS at 4Science can take your project to the next level, get in touch!

Logo USACH

Universidad de Santiago de Chile
Avenida Libertador Bernardo O'Higgins nº 3363. Estación Central. Santiago Chile.
ciencia.abierta@usach.cl © 2023
The DSpace CRIS Project - Modificado por VRIIC USACH.

  • Accessibility settings
  • Privacy policy
  • End User Agreement
  • Send Feedback
Logo DSpace-CRIS
Repository logo COAR Notify