Invention Grant
- Patent Title: Methods and apparatus for a shear-enhanced CNT-assembly nanosensor platform for ultra-sensitive and selective protein detection
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Application No.: US15813077Application Date: 2017-11-14
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Publication No.: US10955380B2Publication Date: 2021-03-23
- Inventor: Hsueh-Chia Chang , Diya Li , Satyajyoti Senapati
- Applicant: University of Notre Dame du Lac
- Applicant Address: US IN South Bend
- Assignee: University of Notre Dame du Lac
- Current Assignee: University of Notre Dame du Lac
- Current Assignee Address: US IN South Bend
- Agency: Greenberg Traurig, LLP
- Main IPC: G01N27/414
- IPC: G01N27/414 ; G01N33/561 ; B82Y5/00 ; B82Y15/00 ; C12Q1/00 ; G01N27/12 ; G01N33/541 ; G01N33/543

Abstract:
A nanoscale protein-sensing platform with a non-equilibrium on-off switch that employs dielectrophoretic and hydrodynamic shear forces to overcome these thermodynamic limitations with irreversible kinetics. The detection sensitivity is achieved with complete association of the antibody-antigen-antibody (Ab-Ag-Ab) complex by precisely and rapidly assembling carbon nanotubes (CNT) across two parallel electrodes via sequential DC electrophoresis and dielectrophoresis (DEP), and with single-CNT electron tunneling conductance. The high selectivity is achieved with a critical hydrodynamic shear rate between the activated dissociation shear rates of target and non-target linkers of the aligned CNTs.
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