Three driving forces control the energy level alignment between transition-metal oxides and organic materials: the chemical interaction between the two materials, the organic electronegativity, and the possible space charge layer formed in the oxide. This is illustrated in this study by analyzing experimentally and theoretically a paradigmatic case, the TiO<sub>2</sub>(110)/TCNQ interface; due to the chemical interaction between the two materials, the organic electron affinity level is located below the Fermi energy of the <i>n</i>-doped TiO<sub>2</sub>. Then, one electron is transferred from the oxide to this level and a space charge layer is developed in the oxide, inducing an important increase in the interface dipole and in the oxide wo...
∆S‡ influence on interfacial electron transfer dynamics from anatase TiO2 to molecular acceptor
The interface between an organic molecule and inorganic metal or semiconducting substrate serves a m...
Organic hetero-junctions in multi-layered thin film stacks comprising alternate layers of the molecu...
Three driving forces control the energy level alignment between transition-metal oxides and organic ...
Presentación del trabajo como contribución oral en los congresos internacionales: IPOE 2017 (julio 2...
Modern devices such as organic light emitting diodes use organic/oxide and organic/metal interfaces ...
In spite of the many advances that have been made in recent years [1], the energy level alignment at...
Transition metal oxide thin films are commonly used in organic electronics devices to improve charge...
The interface formed by a titanium oxide nanoparticle and a set of carboxyl molecules is quantum che...
The interface between the tetrathiafulvalene/tetracyanoquinodimethane (TTF-TCNQ) organic blend and t...
The energy level alignment of the two organic materials forming the TTF-TCNQ interface is analyzed b...
This licentiate thesis deals with the electronic and geometrical properties of metal-semiconductor a...
It is becoming accepted that ultrathin dielectric layers on metals are not merely passive decoupling...
The performance of molecule based electronic devices can be improved by use of transition metal oxid...
The molecule/metal interface is the key element in charge injection devices. It can be generally def...
∆S‡ influence on interfacial electron transfer dynamics from anatase TiO2 to molecular acceptor
The interface between an organic molecule and inorganic metal or semiconducting substrate serves a m...
Organic hetero-junctions in multi-layered thin film stacks comprising alternate layers of the molecu...
Three driving forces control the energy level alignment between transition-metal oxides and organic ...
Presentación del trabajo como contribución oral en los congresos internacionales: IPOE 2017 (julio 2...
Modern devices such as organic light emitting diodes use organic/oxide and organic/metal interfaces ...
In spite of the many advances that have been made in recent years [1], the energy level alignment at...
Transition metal oxide thin films are commonly used in organic electronics devices to improve charge...
The interface formed by a titanium oxide nanoparticle and a set of carboxyl molecules is quantum che...
The interface between the tetrathiafulvalene/tetracyanoquinodimethane (TTF-TCNQ) organic blend and t...
The energy level alignment of the two organic materials forming the TTF-TCNQ interface is analyzed b...
This licentiate thesis deals with the electronic and geometrical properties of metal-semiconductor a...
It is becoming accepted that ultrathin dielectric layers on metals are not merely passive decoupling...
The performance of molecule based electronic devices can be improved by use of transition metal oxid...
The molecule/metal interface is the key element in charge injection devices. It can be generally def...
∆S‡ influence on interfacial electron transfer dynamics from anatase TiO2 to molecular acceptor
The interface between an organic molecule and inorganic metal or semiconducting substrate serves a m...
Organic hetero-junctions in multi-layered thin film stacks comprising alternate layers of the molecu...