Our research group focuses on exploiting, exploring and understanding of structure-function relationships in single molecule junctions of different kinds of functional redox molecules. This is done with new and exciting electronic behavior through break-junction experimental techniques, such as scanning tunneling microscope break-Junction technique (STM-BJ) and conventional electrochemical techniques. Functional redox molecules are promising candidates for their application as active components in electronic devices, since by means of molecular design and chemical synthesis it is possible to tune and switch the electrical properties, and to explore new electrical phenomena.
Linear free-energy relationships. Reactivity descriptors and guidelines based on ligand parametrization for electroreduction of O2 catalyzed by metallophthalocyanines and
Tunable Nanoscale Metal-Molecule-Semiconductor Junctions via Light-Controlled Molecular Orientation
Linear free-energy relationships. Reactivity descriptors and guidelines based on ligand parametrization for electroreduction of O2 catalyzed by metallophthalocyanines and
Collaborative networks
- Dr. Diana Dulic, Molecular Electronics Laboratory, Department of Physics, Universidad de Chile, Chile.
- Dr. Latha Venkataraman, Department of Applied Physics and Department of Chemistry, Columbia University, USA.
- Dr. Nadim Darwish, Department of Chemistry, Nanochemistry Research Institute Faculty of Science and Engineering Curtin University, Perth-Australia
BOOK CHAPTER
Sophie Griveau, Ingrid Ponce, José H Zagal, Fethi Bedioui, Modified Electrodes with MN4 Complexes: Conception and Electroanalytical Performances for the Detection of Thiols.
In book: Volume 2: ELECTROCHEMISTRY OF N4 MACROCYCLIC METAL COMPLEXES. Biomimesis, Electroanalysis, and Electrosynthesis of N4, F.Bedioui, J.H. Zagal editors, Springer (2015), pp.277-321
DOI: 10.1007/978-3-319-31332-0_7
- Proyecto de Inserción en la Academia CONICYT-PAI 79150041 Electrónica Molecular; Procesos de Transferencia de Carga Interfasial (2016-2019).
- Proyecto Fondecyt Postdoc 3140104 Estudio de Transporte Electrónico y Transferencia de Carga en sistemas auto-ensamblados (2013-2015).