Sensor system and electrodes
Sensors having an advantageous design and methods for fabricating such sensors are generally provided. Some sensors described herein comprise pairs of electrodes having radial symmetry, pairs of nested electrodes, and/or nanowires. Some embodiments relate to fabricating electrodes by methods in which nanowires are deposited from a fluid contacted with a substrate in a manner such that it evaporates and is replenished.
1. A sensor, comprising:
a first electrode;
a second electrode; and
a plurality of nanowires, wherein:
the first and second electrodes are disposed on the plurality of nanowires;
the plurality of nanowires forms a circular structure;
the sensor comprises a plurality of pairs of electrodes comprising greater than or equal to 5 pairs of electrodes;
the plurality of pairs of electrodes comprises the first electrode and the second electrode; and
the plurality of pairs of electrodes are equidistant from a center point.
2. A sensor as in claim 1 , wherein the plurality of pairs of electrodes comprises fewer than or equal to 40 pairs of electrodes.
3. A sensor as in claim 1 , the plurality of nanowires comprises nanowires having an average length of greater than or equal to 5 microns and less than or equal to 50 microns.
4. A sensor as in claim 1 , wherein the plurality of nanowires comprises a nanowire having a charged surface.
5. A sensor as in claim 1 , wherein the plurality of nanowires comprises a nanowire comprising a binding entity.
6. A sensor as in claim 5 , wherein the binding entity is a binding entity for a biomarker for brain injury.
7. A sensor as in claim 5 , wherein the binding entity is a binding entity for a small-molecule biomarker.
8. A sensor as in any claim 5 , wherein the binding entity is a binding entity for lipids.
9. A sensor as in claim 5 , wherein the binding entity is a binding entity for a viral protein.
10. A sensor as in claim 9 , wherein the viral protein is a human viral protein, a non-human animal viral protein, and/or a plant viral protein.
11. A sensor as in claim 1 , wherein the sensor comprises a blocking layer.
12. A sensor as in claim 11 , wherein the blocking layer is disposed on the plurality of nanowires.
13. A sensor as in claim 11 , wherein the blocking layer comprises a protein.
14. A sensor as in claim 11 , wherein the blocking layer comprises a stabilizer which is removed upon contact with liquid.
15. A method comprising exposing the sensor of claim 1 to a bodily fluid.
16. A method as in claim 15 , wherein the bodily fluid was collected using a swab.
17. A method as in claim 15 , wherein the bodily fluid comprises a solid or viscous sample resuspended in another fluid.
18. A sensor as in claim 1 , wherein the sensor is configured to output a signal indicative of a concentration of a protein or other biomarker in a fluid.
19. A sensor as in claim 1 , wherein the pairs of electrodes in the plurality of pairs of electrodes are disposed on the circular structure.
20. A sensor as in claim 1 , wherein the sensor comprises two or more groups of nanowires that are functionalized with different chemistries.
21. A sensor as in claim 1 , wherein a nanowire in the plurality of nanowires comprises a nucleic acid, DNA, RNA or peptide-nucleic acid complimentary to the genetic sequence to be detected.
22. A sensor as in claim 1 , wherein the nanowires in the plurality of nanowires have an electrical conductivity of greater than or equal to 0.333 S/cm.
23. A sensor as in claim 22 , wherein the nanowires in the plurality of nanowires have an electrical conductivity of less than or equal to 50,000 S/cm.
24. A sensor as in claim 1 , wherein the plurality of nanowires comprises at most 100,000 nanowires.
25. A sensor as in claim 1 , wherein the nanowires in the plurality of nanowires are substantially tangential to the circular structure.
26. A sensor as in claim 1 , wherein the first and second electrodes are placed in electrical communication to one another by exactly one nanowire.