Solid-state nanopores are widely used as a platform for stochastic nanopore sensing because they can provide better robustness, controllable pore size, and higher integrability than biological nanopores. However, the fabrication procedures, including thin film preparation and nanopore formation, require advanced micro-and nano-fabrication techniques. Here, we describe the simple fabrication of solid-state nanopores in a commercially available material: a flat thin carbon film-coated micro-grid for a transmission electron microscope (TEM). We attempted two general methods for nanopore fabrication in the carbon film. The first method was a scanning TEM (STEM) electron beam method. Nanopores were fabricated by irradiating a focused electron be...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
Nanopores in solid-state membranes are promising for a wide range of applications including DNA sequ...
Solid-state nanopores are a nanofluidic platform with unique advantages for single-molecule analysis...
Abstract—Sub-5 nm nanopores are widely used in single-molecule detections for biological and chemica...
Single molecule detection is of vital importance for fundamental biotechnology research and practica...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
We report a simple and scalable technique for the fabrication of nanopore arrays on freestanding SiN...
Solid-state nanopores fabricated by a high-intensity electron beam in ceramic membranes can be fine-...
Nanofabrication techniques for achieving dimensional control at the nanometer scale are generally eq...
The fabrication of solid-state nanopores using the electron beam of a transmission electron microsco...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
Nanofabrication techniques are combined to produce a nanopore (less than 10nm in diameter) in a thin...
The addition of carbon to samples, during imaging, presents a barrier to accurate TEM analysis, the ...
The addition of carbon to samples, during transmission electron microscope imaging, presents a barri...
Solid-state nanopores are considered a promising tool for the study of biological polymers such as D...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
Nanopores in solid-state membranes are promising for a wide range of applications including DNA sequ...
Solid-state nanopores are a nanofluidic platform with unique advantages for single-molecule analysis...
Abstract—Sub-5 nm nanopores are widely used in single-molecule detections for biological and chemica...
Single molecule detection is of vital importance for fundamental biotechnology research and practica...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
We report a simple and scalable technique for the fabrication of nanopore arrays on freestanding SiN...
Solid-state nanopores fabricated by a high-intensity electron beam in ceramic membranes can be fine-...
Nanofabrication techniques for achieving dimensional control at the nanometer scale are generally eq...
The fabrication of solid-state nanopores using the electron beam of a transmission electron microsco...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
Nanofabrication techniques are combined to produce a nanopore (less than 10nm in diameter) in a thin...
The addition of carbon to samples, during imaging, presents a barrier to accurate TEM analysis, the ...
The addition of carbon to samples, during transmission electron microscope imaging, presents a barri...
Solid-state nanopores are considered a promising tool for the study of biological polymers such as D...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
Nanopores in solid-state membranes are promising for a wide range of applications including DNA sequ...
Solid-state nanopores are a nanofluidic platform with unique advantages for single-molecule analysis...