Nanopores have been implemented as nanosensors for DNA sequencing, biomolecule inspection, chemical analysis, nanoparticle detection, etc. For high-throughput and parallelized measurement using nanopore arrays, individual addressability has been a crucial technological solution in order to enable scrutiny of signals generated at each and every nanopore. Here, an alternative pathway of employing arrayed nanopores to perform sensor functions is investigated by examining the group behavior of nanoparticles translocating multiple nanopores. As no individual addressability is required, fabrication of nanopore devices along with microfluidic cells and readout circuits can be greatly simplified. Experimentally, arrays of less than 10 pores are sho...
The fine-tuning of molecular transport is a ubiquitous problem of single-molecule methods. The latte...
Nanopore sensors are emerging as a promising technology for single molecule analysis and polymer seq...
Nanopores bear great potential as single-molecule tools for bioanalytical sensing and sequencing, du...
Nanopores have been implemented as nanosensors for DNA sequencing, biomolecule inspection, chemical ...
Nanopores have been implemented as nanosensors for DNA sequencing, biomolecule inspection, chemical ...
Nanopore sensors have developed into powerful tools for single-molecule studies since their inceptio...
Solid-state nanopore devices have received extensive attention across scientific and engineering dis...
Nanopore based sensing technology has been widely studied for a broad range of applications includin...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
Nanopore-based sensors are an emerging class of devices capable of detecting individual molecules ow...
Nanopore sensors have developed into powerful tools for single-molecule studies since their inceptio...
Nanopores are nanofluidic channels formed through thin membranes that can deliver standout single-mo...
Nucleic acid nanoparticles (NANPs) are an emerging class of programmable structures with tunable sha...
Thesis (Ph.D.)--Boston UniversitySince the first report of single-molecule detection using the biolo...
Single molecule nanopore sensing is emerging as a powerful tool for probing the properties of indivi...
The fine-tuning of molecular transport is a ubiquitous problem of single-molecule methods. The latte...
Nanopore sensors are emerging as a promising technology for single molecule analysis and polymer seq...
Nanopores bear great potential as single-molecule tools for bioanalytical sensing and sequencing, du...
Nanopores have been implemented as nanosensors for DNA sequencing, biomolecule inspection, chemical ...
Nanopores have been implemented as nanosensors for DNA sequencing, biomolecule inspection, chemical ...
Nanopore sensors have developed into powerful tools for single-molecule studies since their inceptio...
Solid-state nanopore devices have received extensive attention across scientific and engineering dis...
Nanopore based sensing technology has been widely studied for a broad range of applications includin...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
Nanopore-based sensors are an emerging class of devices capable of detecting individual molecules ow...
Nanopore sensors have developed into powerful tools for single-molecule studies since their inceptio...
Nanopores are nanofluidic channels formed through thin membranes that can deliver standout single-mo...
Nucleic acid nanoparticles (NANPs) are an emerging class of programmable structures with tunable sha...
Thesis (Ph.D.)--Boston UniversitySince the first report of single-molecule detection using the biolo...
Single molecule nanopore sensing is emerging as a powerful tool for probing the properties of indivi...
The fine-tuning of molecular transport is a ubiquitous problem of single-molecule methods. The latte...
Nanopore sensors are emerging as a promising technology for single molecule analysis and polymer seq...
Nanopores bear great potential as single-molecule tools for bioanalytical sensing and sequencing, du...