Label-free and real-time detections of mismatched dsDNAs are demonstrated using MutS-protein-immobilized, single-walled carbon nanotube field effect transistor (SWNT-FET) devices. The E. coli MutS proteins specifically recognizing mismatched dsDNAs are immobilized on SWNT-FET devices that have been fabricated for high sensitivity using a shadow mask lithographic technique to obtain a thin and wide Schottky contact region. The MutS-immobilized SWNT-FETs have successfully detected 40 base pair dsDNAs having single G-T mismatches at the 20th base pair positions by displaying significant electrical conductance drops at as low as 100 pM concentration. Systematic control experiments have revealed that the signal changes indeed originated from spe...
In this study, comparsion between the performances of carbon nanotube based random network field-ef...
The integration of SWNT\u27s with biomolecules is allows for taking advantage of the strengths of bo...
Carbon nanotubes (CNTs) are biocompatible 1D nanomaterials that have generated much interest in the ...
We report the fabrication of carbon nanotube field-effect transistors for biosensing applications an...
We demonstrate that Au-cluster-decorated single-walled carbon nanotubes (SWNTs) may be used to discr...
Specific, sensitive, reproducible, and rapid detection of chemical and biological species is crucial...
This thesis discusses the use of carbon nanotube field effect transistors as sensors for DNA. It pro...
Biosensors, which harness the unique specific binding properties of biomaterials such as proteis, ar...
The integration of biomaterials with carbon nanotubes, CNTs, has promoted an interdisciplinary field...
Carbon nanomaterials field-effect transistor (FET)-based electrical biosensors provide significant a...
The objective of this research is to develop nanoscale ultrasensitive transducers for detection of b...
Single-walled carbon nanotube (SWCNT)-based field-effect transistors (FETs) have been explored for u...
Arrays of chemical sensors based on homo-oligomer single-stranded DNA (ssDNA) adsorbed to single-wal...
The field effect transistor (FET) based on a network of single-walled carbon nanotubes (SWCNTs) that...
[[sponsorship]]應用科學研究中心[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/G...
In this study, comparsion between the performances of carbon nanotube based random network field-ef...
The integration of SWNT\u27s with biomolecules is allows for taking advantage of the strengths of bo...
Carbon nanotubes (CNTs) are biocompatible 1D nanomaterials that have generated much interest in the ...
We report the fabrication of carbon nanotube field-effect transistors for biosensing applications an...
We demonstrate that Au-cluster-decorated single-walled carbon nanotubes (SWNTs) may be used to discr...
Specific, sensitive, reproducible, and rapid detection of chemical and biological species is crucial...
This thesis discusses the use of carbon nanotube field effect transistors as sensors for DNA. It pro...
Biosensors, which harness the unique specific binding properties of biomaterials such as proteis, ar...
The integration of biomaterials with carbon nanotubes, CNTs, has promoted an interdisciplinary field...
Carbon nanomaterials field-effect transistor (FET)-based electrical biosensors provide significant a...
The objective of this research is to develop nanoscale ultrasensitive transducers for detection of b...
Single-walled carbon nanotube (SWCNT)-based field-effect transistors (FETs) have been explored for u...
Arrays of chemical sensors based on homo-oligomer single-stranded DNA (ssDNA) adsorbed to single-wal...
The field effect transistor (FET) based on a network of single-walled carbon nanotubes (SWCNTs) that...
[[sponsorship]]應用科學研究中心[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/G...
In this study, comparsion between the performances of carbon nanotube based random network field-ef...
The integration of SWNT\u27s with biomolecules is allows for taking advantage of the strengths of bo...
Carbon nanotubes (CNTs) are biocompatible 1D nanomaterials that have generated much interest in the ...