Nanopores in solid-state membranes are promising for a wide range of applications including DNA sequencing, ultra-dilute analyte detection, protein analysis, and polymer data storage. Techniques to fabricate solid-state nanopores have typically been time consuming or lacked the resolution to create pores with diameters down to a few nanometres, as required for the above applications. In recent years, several methods to fabricate nanopores in electrolyte environments have been demonstrated. These in situ methods include controlled breakdown (CBD), electrochemical reactions (ECR), laser etching and laser-assisted controlled breakdown (la-CBD). These techniques are democratising solid-state nanopores by providing the ability to fabricate pores...
Nanopore sensing relies on the application of a voltage across a nano-scale aperture fabricated in a...
Nanopores have attracted widespread attention in DNA sequencing and protein or biomarker detection, ...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
Nanopore sensors provide a unique platform to detect individual nucleic acids, proteins, and other b...
This review summarises the development of in situ solid-state nanopore fabrication techniques. These...
Controlled breakdown has recently emerged as a highly accessible technique to fabricate solid-state ...
Abstract Solid-state nanopore has captured the attention of many researchers due to its characterist...
Controlled breakdown has recently emerged as a highly accessible technique to fabricate solid-state ...
Nanofabrication techniques for achieving dimensional control at the nanometer scale are generally eq...
In this paper, the progress of solid-state nanopores fabrication is reviewed after a brief summary o...
Solid-state nanopores have been developed as a prominent tool for single molecule analysis in versat...
Nanopore-based analysis is currently an area of great interest in many disciplines with the potentia...
Recent work on protein nanopores indicates that single molecule characterization (including DNA sequ...
The 21st century marks the defining point of human history in terms of technological advancement. I...
Nanopore sensing relies on the application of a voltage across a nano-scale aperture fabricated in a...
Nanopores have attracted widespread attention in DNA sequencing and protein or biomarker detection, ...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
Nanopore sensors provide a unique platform to detect individual nucleic acids, proteins, and other b...
This review summarises the development of in situ solid-state nanopore fabrication techniques. These...
Controlled breakdown has recently emerged as a highly accessible technique to fabricate solid-state ...
Abstract Solid-state nanopore has captured the attention of many researchers due to its characterist...
Controlled breakdown has recently emerged as a highly accessible technique to fabricate solid-state ...
Nanofabrication techniques for achieving dimensional control at the nanometer scale are generally eq...
In this paper, the progress of solid-state nanopores fabrication is reviewed after a brief summary o...
Solid-state nanopores have been developed as a prominent tool for single molecule analysis in versat...
Nanopore-based analysis is currently an area of great interest in many disciplines with the potentia...
Recent work on protein nanopores indicates that single molecule characterization (including DNA sequ...
The 21st century marks the defining point of human history in terms of technological advancement. I...
Nanopore sensing relies on the application of a voltage across a nano-scale aperture fabricated in a...
Nanopores have attracted widespread attention in DNA sequencing and protein or biomarker detection, ...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...