Surfaces of metal oxides at working conditions are usually electrified because of the acid–base chemistry. The charged interface compensated with counterions forms the so-called electric double layer. The coupling of surface chemistry and the electric double layer is considered to be crucial but is poorly understood because of the lack of information at the atomistic scale. Here, we used the latest development in density functional theory-based finite-field molecular dynamics simulation to investigate the pH dependence of the Helmholtz capacitance at electrified rutile TiO2(110)–NaCl electrolyte interfaces. It is found that, because of competing forces from surface adsorption and from the electric double layer, water molecules have a strong...
The electrical double-layer plays a key role in important interfacial electrochemical processes from...
The electrical double-layer plays a key role in important interfacial electrochemical processes from...
The electrical double-layer plays a key role in important interfacial electrochemical processes from...
Surfaces of metal oxides at working conditions are usually electrified because of the acid–base chem...
Surfaces of metal oxides at working conditions are usually electrified due to the acid-base chemistr...
The structure of electric double layers (EDLs) dictates the chemistry and the physics of electrified...
The structure of electric double layers (EDLs) dictates the chemistry and the physics of electrified...
Metal-oxide surfaces act as both Br{\o}nsted acids and bases, which allows the exchange of protons w...
Metal-oxide surfaces act as both Br{\o}nsted acids and bases, which allows the exchange of protons w...
\u3cp\u3eThe distribution of electric fields within the electrochemical double layer depends on both...
The distribution of electric fields within the electrochemical double layer depends on both the elec...
In this work, we theoretically study the differential capacitance of an aqueous electrolyte in conta...
In this work, we theoretically study the differential capacitance of an aqueous electrolyte in conta...
In this work, we theoretically study the differential capacitance of an aqueous electrolyte in conta...
Amphifunctional double layers are defined by the coupling of electronic and ionic surface charging p...
The electrical double-layer plays a key role in important interfacial electrochemical processes from...
The electrical double-layer plays a key role in important interfacial electrochemical processes from...
The electrical double-layer plays a key role in important interfacial electrochemical processes from...
Surfaces of metal oxides at working conditions are usually electrified because of the acid–base chem...
Surfaces of metal oxides at working conditions are usually electrified due to the acid-base chemistr...
The structure of electric double layers (EDLs) dictates the chemistry and the physics of electrified...
The structure of electric double layers (EDLs) dictates the chemistry and the physics of electrified...
Metal-oxide surfaces act as both Br{\o}nsted acids and bases, which allows the exchange of protons w...
Metal-oxide surfaces act as both Br{\o}nsted acids and bases, which allows the exchange of protons w...
\u3cp\u3eThe distribution of electric fields within the electrochemical double layer depends on both...
The distribution of electric fields within the electrochemical double layer depends on both the elec...
In this work, we theoretically study the differential capacitance of an aqueous electrolyte in conta...
In this work, we theoretically study the differential capacitance of an aqueous electrolyte in conta...
In this work, we theoretically study the differential capacitance of an aqueous electrolyte in conta...
Amphifunctional double layers are defined by the coupling of electronic and ionic surface charging p...
The electrical double-layer plays a key role in important interfacial electrochemical processes from...
The electrical double-layer plays a key role in important interfacial electrochemical processes from...
The electrical double-layer plays a key role in important interfacial electrochemical processes from...