The redox capacitance and its associated quantum component arising from the charging of molecular levels from coupled metallic states are resolvable and quantified experimentally by capacitance spectroscopy (CS). Herein we relate both this N-electron system capacitance directly to conceptual chemistry density functional theory (DFT) and the charging magnitude and associated quantum capacitive term (which resemble those introduced by Serge Luryi) to the Kohn-Sham frontier molecular orbital associated energies for isolated molecules and DFT calculated redox density of states (DOS) at metal-molecule junctions for a single molecule and molecular films confined at metallic interfaces. DFT computational analyses reveal the orbital energetic align...
\u3cp\u3eThe distribution of electric fields within the electrochemical double layer depends on both...
Understanding the complex and inherently multi-scale interface between a charged electrode surface a...
Stable organic radicals integrated into molecular junctions represent a practical realization of the...
Redox active self-assembled monolayers inherently possess both electrochemically addressable and pol...
Redox active self-assembled monolayers inherently possess both electrochemically addressable and pol...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
Redox active self-assembled monolayers inherently possess both electrochemically addressable and pol...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
International audienceThis paper aims at enlightening the link between surface properties, conceptua...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
The charge capacitance of metal containing complexes are studied. For molecules with multiple bondin...
The capacitance characterizes abilities of various systems to store energy in the form of energy den...
Density functional calculations were performed on 15 functionalized graphene models to investigate t...
The electronic density of states and its contribution to the capacitance of graphene compounds (oxid...
The electrode-electrolyte interface is studied from the perspective of Density Functional Theory (DF...
\u3cp\u3eThe distribution of electric fields within the electrochemical double layer depends on both...
Understanding the complex and inherently multi-scale interface between a charged electrode surface a...
Stable organic radicals integrated into molecular junctions represent a practical realization of the...
Redox active self-assembled monolayers inherently possess both electrochemically addressable and pol...
Redox active self-assembled monolayers inherently possess both electrochemically addressable and pol...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
Redox active self-assembled monolayers inherently possess both electrochemically addressable and pol...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
International audienceThis paper aims at enlightening the link between surface properties, conceptua...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
The charge capacitance of metal containing complexes are studied. For molecules with multiple bondin...
The capacitance characterizes abilities of various systems to store energy in the form of energy den...
Density functional calculations were performed on 15 functionalized graphene models to investigate t...
The electronic density of states and its contribution to the capacitance of graphene compounds (oxid...
The electrode-electrolyte interface is studied from the perspective of Density Functional Theory (DF...
\u3cp\u3eThe distribution of electric fields within the electrochemical double layer depends on both...
Understanding the complex and inherently multi-scale interface between a charged electrode surface a...
Stable organic radicals integrated into molecular junctions represent a practical realization of the...