Silicon nitride is a ubiquitous and well-established nanofabrication material with a host of favourable properties for creating nanofluidic devices with a range of compelling designs that offer extraordinary discovery potential. Nanochannels formed between two thin silicon nitride windows can open up vistas for exploration by freeing transmission electron microscopy to interrogate static structures and structural dynamics in liquid-based samples. Nanopores present a strikingly different architecture - nanofluidic channels through a silicon nitride membrane - and are one of the most promising tools to emerge in biophysics and bioanalysis, offering outstanding capabilities for single molecule sensing. The constrained environments in such nano...
Nanomed lab activity focuses on several aspects related to the “Nano-World”: (i) planning, developme...
Controlled dielectric breakdown (CDB) of silicon nitride thin films immersed in electrolyte solution...
We demonstrate that 3keVion beams, formed from the common noble gases, He, Ne, Ar, Kr, and Xe, can c...
Nanopores are a prominent enabling tool for single-molecule applications such as DNA sequencing, pro...
Single molecule studies depend upon precise control over the chemical and physical structure of the ...
We present a review of the use of selected nanofabricated thin films to deliver a host of capabiliti...
We report the exploration of silicon nitride thin films prepared by low-pressure chemical vapor depo...
Silicon nitride thin films are useful as etch-stop masks in micro- and nanofabrication. As structura...
Silicon nitride fabricated by low-pressure chemical vapor deposition (LPCVD) to be silicon-rich (SiN...
An array of very uniform cylindrical nanopores with a pore diameter as small as 25 nm has been fabri...
The fabrication of synthetic nanopores with dimensional and electrical properties similar to organic...
Solid-state nanopores (SSNs) are single-molecule resolution sensors with a growing footprint in real...
Nanopores, nanometer sized holes in membranes, have recently come into prominence as tools for singl...
Nanopore-based DNA sequencing provides several advantages over alternative conventional methods, e.g...
Mechanical properties of a nanomechanical resonator significantly impact the performance of a resona...
Nanomed lab activity focuses on several aspects related to the “Nano-World”: (i) planning, developme...
Controlled dielectric breakdown (CDB) of silicon nitride thin films immersed in electrolyte solution...
We demonstrate that 3keVion beams, formed from the common noble gases, He, Ne, Ar, Kr, and Xe, can c...
Nanopores are a prominent enabling tool for single-molecule applications such as DNA sequencing, pro...
Single molecule studies depend upon precise control over the chemical and physical structure of the ...
We present a review of the use of selected nanofabricated thin films to deliver a host of capabiliti...
We report the exploration of silicon nitride thin films prepared by low-pressure chemical vapor depo...
Silicon nitride thin films are useful as etch-stop masks in micro- and nanofabrication. As structura...
Silicon nitride fabricated by low-pressure chemical vapor deposition (LPCVD) to be silicon-rich (SiN...
An array of very uniform cylindrical nanopores with a pore diameter as small as 25 nm has been fabri...
The fabrication of synthetic nanopores with dimensional and electrical properties similar to organic...
Solid-state nanopores (SSNs) are single-molecule resolution sensors with a growing footprint in real...
Nanopores, nanometer sized holes in membranes, have recently come into prominence as tools for singl...
Nanopore-based DNA sequencing provides several advantages over alternative conventional methods, e.g...
Mechanical properties of a nanomechanical resonator significantly impact the performance of a resona...
Nanomed lab activity focuses on several aspects related to the “Nano-World”: (i) planning, developme...
Controlled dielectric breakdown (CDB) of silicon nitride thin films immersed in electrolyte solution...
We demonstrate that 3keVion beams, formed from the common noble gases, He, Ne, Ar, Kr, and Xe, can c...