IP Library Granted Patent US 10,139,270
Granted Patent B2
US 10,139,270 · App. 13/808,138 · Granted Nov 27, 2018

Asymmetric sensor

Inventors: Rajakkannu Mutharasan (West Chester, PA); Blake N. Johnson (Philadelphia, PA); Ramji S. Lakshmanan (Dublin, IE); Harsh Sharma (Jersey City, NJ)
Assignee: Drexel University
G01H11/08H01L41/1132H01L41/1136
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Quick Facts
Patent No.
US 10,139,270
App. No.
13/808,138
Granted
Nov 27, 2018
Kind
B2
Abstract

An asymmetric sensor having asymmetric electrodes and/or being asymmetrically anchored provides enhanced sensitivity. In example embodiments, part of the electrode on a sensor is etched or removed resulting in enhanced mass-change sensitive resonant modes. In another example embodiment, a sensor is anchored asymmetrically, also resulting in enhanced mass-change sensitive resonant modes. By asymmetrically anchoring a piezoelectric portion of a sensor, resonant bending modes of the sensor can be measured electrically without external instrumentation. Modifying the electrode of a piezoelectric cantilever enables expression of mass-change sensitive resonant modes that normally do not lend themselves to electrical measurement.

Claims (8)

1. A piezoelectric cantilever sensor having a receptor immobilized thereon to which an analyte binds, said sensor being asymmetrically anchored at one end such that anchoring on one side of the sensor is longer than anchoring on another side of the sensor whereby the cantilever sensor exhibits different resonant bending modes that can be measured electrically without external instrumentation that measures sensor oscillation.

2. The piezoelectric cantilever sensor of claim 1 , wherein the piezoelectric cantilever sensor comprises lead zirconate titanate.

3. The piezoelectric cantilever sensor of claim 1 , wherein the anchoring on one side of the sensor being longer than the anchoring on the another side of the sensor is adapted to cause differential longitudinal deformation of said cantilever sensor so as to induce transverse vibration that causes charge accumulation in said piezoelectric cantilever sensor whereby the different resonant bending modes become electrically measurable.

4. The analyte sensor of claim 1 , wherein the receptor is immobilized at a distal tip of the piezoelectric cantilever sensor at a longitudinal end of said cantilever opposite said one end.

5. A piezoelectric cantilever sensor having a receptor immobilized thereon to which an analyte binds, said sensor being anchored at one end and having asymmetric electrode portions on respective sides of the cantilever sensor such that a first electrode portion on one side of the cantilever sensor has a first area that is larger than a second area of a second electrode portion on another side of the cantilever sensor whereby the cantilever sensor exhibits different resonant bending modes that can be measured electrically without external instrumentation that measures sensor oscillation.

6. The piezoelectric cantilever sensor of claim 5 , wherein the cantilever sensor comprises lead zirconate titanate.

7. The piezoelectric cantilever sensor of claim 5 , wherein the first and second areas of the first and second electrode portions are adapted to cause differential longitudinal deformation of said cantilever sensor so as to induce transverse vibration that causes charge accumulation in said piezoelectric cantilever sensor whereby the different resonant bending modes become electrically measurable.

8. The analyte sensor of claim 5 , wherein the receptor is immobilized at a distal tip of the piezoelectric cantilever sensor at a longitudinal end of said cantilever opposite said one end.

Assignments (2)
CONFIRMATORY LICENSE Recorded May 15, 2015
From: DREXEL UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 035705/0124 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2013
From: MUTHARASAN, RAJAKKANNU; JOHNSON, BLAKE N.; LAKSHMANAN, RAMJI; SHARMA, HASH
To: DREXEL UNIVERSITY
Reel/Frame 029560/0349 →
Continuity (2)
Provisional Application 61362233 · Jul 7, 2010
Related Publication 20130205902A1 · Aug 15, 2013
Cited By (1)
US 12,207,925