A simple and versatile method for the direct fabrication of tunneling electrodes with controllable gap distance by using electron-beam-induced deposition (EBID) is presented. We show that tunneling nanogaps smaller than the minimum feature size realizable by conventional EBID can be achieved with a standard scanning electron microscope. These gaps can easily be embedded in nanopores with high accuracy. The controllability of this fabrication method and the nanogap geometry was verified by SEM and TEM imaging. Furthermore, tunneling spectroscopy in a group of solvents with different barrier heights was used to determine the nanogap functionality. Ultimately, the presented fabrication method can be further applied for the fabrication of array...
Creating a stable high resistance sub-5 nm nanogap in between conductive electrodes is one of the ma...
ABSTRACT Fabrication of controlled geometry solid-state nanopores (SSNs) using a transmission electr...
Abstract: A high-resolution focused electron beam is used for the fabrication of metal nanostructure...
The main focus of this work is the development of a solid‐state nanopore detector with embedded tunn...
We report a simple and scalable technique for the fabrication of nanopore arrays on freestanding SiN...
A high-resolution focused electron beam is used for the fabrication of metal nanostructures and devi...
Abstract—Sub-5 nm nanopores are widely used in single-molecule detections for biological and chemica...
Single nanopore electrodes and nanopore electrode arrays have been fabricated using a focused ion be...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
Solid-state nanopores are widely used as a platform for stochastic nanopore sensing because they can...
In this chapter, the fabrication of metal nano-spaced electrodes for electronic nanodevices by elect...
Nanopore sensors provide a unique platform to detect individual nucleic acids, proteins, and other b...
Nanofabrication techniques are combined to produce a nanopore (less than 10nm in diameter) in a thin...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
We report on the fabrication and characterization of gold nanoelectrodes with carefully controlled n...
Creating a stable high resistance sub-5 nm nanogap in between conductive electrodes is one of the ma...
ABSTRACT Fabrication of controlled geometry solid-state nanopores (SSNs) using a transmission electr...
Abstract: A high-resolution focused electron beam is used for the fabrication of metal nanostructure...
The main focus of this work is the development of a solid‐state nanopore detector with embedded tunn...
We report a simple and scalable technique for the fabrication of nanopore arrays on freestanding SiN...
A high-resolution focused electron beam is used for the fabrication of metal nanostructures and devi...
Abstract—Sub-5 nm nanopores are widely used in single-molecule detections for biological and chemica...
Single nanopore electrodes and nanopore electrode arrays have been fabricated using a focused ion be...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
Solid-state nanopores are widely used as a platform for stochastic nanopore sensing because they can...
In this chapter, the fabrication of metal nano-spaced electrodes for electronic nanodevices by elect...
Nanopore sensors provide a unique platform to detect individual nucleic acids, proteins, and other b...
Nanofabrication techniques are combined to produce a nanopore (less than 10nm in diameter) in a thin...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
We report on the fabrication and characterization of gold nanoelectrodes with carefully controlled n...
Creating a stable high resistance sub-5 nm nanogap in between conductive electrodes is one of the ma...
ABSTRACT Fabrication of controlled geometry solid-state nanopores (SSNs) using a transmission electr...
Abstract: A high-resolution focused electron beam is used for the fabrication of metal nanostructure...