The capacitance of an N-electron system is established by deriving the atomistic connection between the capacitive energy, the ionization potential, and the electron affinity of the charged system; it is shown further that this connection leads to the linkage of the capacitive energy to the difference between the lowest unoccupied and the highest occupied Kohn-Sham orbital energies of the system. An illustrative example is used to show explicitly the microscopic behavior of the derived capacitance for a finite electron system, and to discuss the tendency of the derived capacitance to limit toward the classical electrostatic capacitance as the system becomes macroscopically large. Discussions relevant to atomic and molecular systems are incl...
In the past two decades, significant progress in constructing physical systems of reduced dimension...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
Annotated lecture slides of lecture 12 for Elementary Physics II (PHY 204), taught by Gerhard Müller...
The capacitance of an N-electron system is established by deriving the atomistic connection between ...
The capacitance characterizes abilities of various systems to store energy in the form of energy den...
The charge capacitance of metal containing complexes are studied. For molecules with multiple bondin...
We report the behavior of the electrochemical capacitance for a variety of atomic junctions using ab...
Impressive progress in the control of atomically thin crystals is now enabling the realization of ga...
The redox capacitance and its associated quantum component arising from the charging of molecular le...
University of Minnesota Ph.D. dissertation. August 2011. Major: Physics. Advisor: Boris I. Shklovski...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
International audienceStrong electronic correlations related to a repulsive local interaction suppre...
Capacitances of molecules, fullerenes and carbon nanotubes under the condition of no electron-tunne...
We have studied the capacitance between two parallel plates enclosing a quantum confined system and ...
In the past two decades, significant progress in constructing physical systems of reduced dimension...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
Annotated lecture slides of lecture 12 for Elementary Physics II (PHY 204), taught by Gerhard Müller...
The capacitance of an N-electron system is established by deriving the atomistic connection between ...
The capacitance characterizes abilities of various systems to store energy in the form of energy den...
The charge capacitance of metal containing complexes are studied. For molecules with multiple bondin...
We report the behavior of the electrochemical capacitance for a variety of atomic junctions using ab...
Impressive progress in the control of atomically thin crystals is now enabling the realization of ga...
The redox capacitance and its associated quantum component arising from the charging of molecular le...
University of Minnesota Ph.D. dissertation. August 2011. Major: Physics. Advisor: Boris I. Shklovski...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
International audienceStrong electronic correlations related to a repulsive local interaction suppre...
Capacitances of molecules, fullerenes and carbon nanotubes under the condition of no electron-tunne...
We have studied the capacitance between two parallel plates enclosing a quantum confined system and ...
In the past two decades, significant progress in constructing physical systems of reduced dimension...
The Fermi level or electrochemical signature of a molecular film containing accessible orbital state...
Annotated lecture slides of lecture 12 for Elementary Physics II (PHY 204), taught by Gerhard Müller...