The application of nanosecond voltage pulses to electrodes provides three ways to conduct local electrochemistry on the micro- to nanometer scale. (1) The finite charging time of the double-layer capacity allows the machining of three-dimensional microstructures. (2) In an electrochemical scanning tunneling microscope, reactions are confined to the tunneling region, due to the depletion of the electrolyte in the tip-surface gap. (3) Ordering processes, following very fast electrochemical reactions, lead to unconventional island patterns on a surface
To explore a minimal feature size of <100 nm with electrochemical additive manufacturing, we use a s...
NANOGAP-ENABLED STUDY OF ELECTRODE REACTIONS BY SCANNING ELECTROCHEMICAL MICROSCOPY\ud Nikoloz Niora...
Scanning probe lithography (SPL) methods 1 have been very actively investigated in the past decade a...
The application of nanosecond voltage pulses to electrodes provides three ways to conduct local elec...
The fabrication of microstructures is one of today's key technologies. Applications of microdevices ...
We show that complex patterns including three-dimensional structures, lines, curved features, and ar...
Regulating the state of the solid-liquid interface by means of electric fields is a powerful tool to...
The lateral extension of electrochemically induced surface modifications is usually determined by th...
Upon the application of ultrashort voltage pulses electrochemical reactions can be spatially confine...
An electrochemical pulse technique enables the fabrication of three-dimensional microelements from s...
Application of ultrashort voltage pulses to a tiny tool electrode under suitable electrochemical con...
Over the last decade, dramatic progresses in fabrication and synthesis of nanomaterials have enabled...
This thesis aims to measure and control behavior of ions in solution near a charged, or electrified,...
Eine treibende Kraft des technischen Fortschritts z.B. in der Biotechnologie, der Automobil- oder Co...
To fully understand the mechanisms of electrochemical reac-tions and to apply these reactions to mod...
To explore a minimal feature size of <100 nm with electrochemical additive manufacturing, we use a s...
NANOGAP-ENABLED STUDY OF ELECTRODE REACTIONS BY SCANNING ELECTROCHEMICAL MICROSCOPY\ud Nikoloz Niora...
Scanning probe lithography (SPL) methods 1 have been very actively investigated in the past decade a...
The application of nanosecond voltage pulses to electrodes provides three ways to conduct local elec...
The fabrication of microstructures is one of today's key technologies. Applications of microdevices ...
We show that complex patterns including three-dimensional structures, lines, curved features, and ar...
Regulating the state of the solid-liquid interface by means of electric fields is a powerful tool to...
The lateral extension of electrochemically induced surface modifications is usually determined by th...
Upon the application of ultrashort voltage pulses electrochemical reactions can be spatially confine...
An electrochemical pulse technique enables the fabrication of three-dimensional microelements from s...
Application of ultrashort voltage pulses to a tiny tool electrode under suitable electrochemical con...
Over the last decade, dramatic progresses in fabrication and synthesis of nanomaterials have enabled...
This thesis aims to measure and control behavior of ions in solution near a charged, or electrified,...
Eine treibende Kraft des technischen Fortschritts z.B. in der Biotechnologie, der Automobil- oder Co...
To fully understand the mechanisms of electrochemical reac-tions and to apply these reactions to mod...
To explore a minimal feature size of <100 nm with electrochemical additive manufacturing, we use a s...
NANOGAP-ENABLED STUDY OF ELECTRODE REACTIONS BY SCANNING ELECTROCHEMICAL MICROSCOPY\ud Nikoloz Niora...
Scanning probe lithography (SPL) methods 1 have been very actively investigated in the past decade a...