Nanopores

“DNA-Dressed NAnopore” for complementary sequence detection

Analytical Chemistry / Biomedical Engineering / Biosensors / Hybridization / Nanofabrication / Nanotechnology / Single molecule / DNA / Nucleic acid hybridization / DNA analysis / Surface Properties / BioSensors / Nanopores / Base Sequence / Electric Conductivity / Biosensing Techniques / DNA probes / Oligonucleotides / Nanotechnology / Single molecule / DNA / Nucleic acid hybridization / DNA analysis / Surface Properties / BioSensors / Nanopores / Base Sequence / Electric Conductivity / Biosensing Techniques / DNA probes / Oligonucleotides

“DNA-Dressed NAnopore” for complementary sequence detection

Analytical Chemistry / Biomedical Engineering / Biosensors / Nanotechnology / Single molecule / DNA / Nucleic acid hybridization / DNA analysis / Surface Properties / BioSensors / Nanopores / Base Sequence / Electric Conductivity / Biosensing Techniques / DNA probes / Oligonucleotides / DNA / Nucleic acid hybridization / DNA analysis / Surface Properties / BioSensors / Nanopores / Base Sequence / Electric Conductivity / Biosensing Techniques / DNA probes / Oligonucleotides

Replication of individual DNA molecules under electronic control using a protein nanopore

DNA replication / Nanotechnology / Multidisciplinary / DNA / Electromagnetic Fields / Enzyme / Electrophoresis / Nanopores / DNA Polymerase / Nucleotides / Oligonucleotides / Voltage Control / Enzyme / Electrophoresis / Nanopores / DNA Polymerase / Nucleotides / Oligonucleotides / Voltage Control

Hierarchical Porous Plasmonic Metamaterials for Reproducible Ultrasensitive Surface-Enhanced Raman Spectroscopy

Engineering / Crystallization / Advanced Materials / Metal Nanoparticles / Gold / Physical sciences / Light / Surface plasmon resonance / CHEMICAL SCIENCES / Reproducibility of Results / Nanopores / Materials Testing / Sensitivity and Specificity / Physical sciences / Light / Surface plasmon resonance / CHEMICAL SCIENCES / Reproducibility of Results / Nanopores / Materials Testing / Sensitivity and Specificity
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