Sensors and devices containing ultra-small nanowire arrays
A network of nanowires may be used for a sensor. The nanowires are metallic, each nanowire has a thickness of at most 20 nm, and each nanowire has a width of at most 20 nm. The sensor may include nanowires comprising Pd, and the sensor may sense a change in hydrogen concentration from 0 to 100%. A device may include the hydrogen sensor, such as a vehicle, a fuel cell, a hydrogen storage tank, a facility for manufacturing steel, or a facility for refining petroleum products.
1. A sensor, comprising:
a network of nanowires, and
an ohmmeter or an integrated circuit, electrically coupled to the network of nanowires,
wherein the nanowires comprises Pd,
each nanowire has a thickness of at most 20 nm,
each nanowire has a width of at most 20 nm,
the nanowires each comprise a first layer, and a second layer in contact with the first layer,
the first layer has a thickness of 2 to 4 nm, and
the second layer comprises at least one member selected from the group consisting of Cr, Ti, Ge, Mo, Au, Ni, alloys thereof and compounds thereof.
2. The sensor of claim 1 , wherein the sensor senses a change in hydrogen concentration from 0 to 100%.
3. An electronic device, comprising the sensor of claim 2 , wherein the electronic device is a computer, a mobile phone, a vehicles, a fuel cell or a hydrogen storage tank.
4. The sensor of claim 1 , wherein the first layer consists of Pd.
5. The sensor of claim 1 , wherein the first layer has a thickness of 2 to 3 nm.
6. An electronic device, comprising the sensor of claim 1 , wherein the electronic device is a computer, a mobile phone, a vehicles, a fuel cell or a hydrogen storage tank.
7. The electronic device of claim 6 , wherein the first layer has a thickness of 2 to 3 nm.
8. The electronic device of claim 6 , wherein the first layer consists of Pd.
9. The electronic device of claim 6 , wherein
the first layer consists of Pd,
the first layer has a thickness of 2 to 3 nm, and
the second layer comprises at least one member selected from the group consisting of Cr, Ti, Ge, Mo, Au, Ni, alloys thereof and compounds thereof.
10. The sensor of claim 1 , wherein the second layer comprises Cr or Ti.
11. An electronic device, comprising the sensor of claim 10 , wherein the electronic device is a computer, a mobile phone, a vehicles, a fuel cell or a hydrogen storage tank.
12. The sensor of claim 1 , wherein the second layer has a thickness of 1 to 3 nm.
13. An electronic device, comprising the sensor of claim 12 , wherein the electronic device is a computer, a mobile phone, a vehicles, a fuel cell or a hydrogen storage tank.
14. A sensor, comprising:
a network of nanowires, and
an ohmmeter or an integrated circuit, electrically coupled to the network of nanowires,
wherein the nanowires comprises Pd,
each nanowire has a thickness of at most 20 nm,
each nanowire has a width of at most 20 nm,
the nanowires each comprise a first layer, and a second layer in contact with the first layer,
the first layer consists of Pd,
the first layer has a thickness of 2 to 3 nm, and
the second layer comprises at least one member selected from the group consisting of Cr, Ti, Ge, Mo, Au, Ni, alloys thereof and compounds thereof.
15. The sensor of claim 14 , wherein the sensor senses a change in hydrogen concentration from 0 to 100%.
16. An electronic device, comprising the sensor of claim 15 , wherein the electronic device is a computer, a mobile phone, a vehicles, a fuel cell or a hydrogen storage tank.
17. The sensor of claim 14 , wherein the second layer comprises Cr or Ti.
18. An electronic device, comprising the sensor of claim 17 , wherein the electronic device is a computer, a mobile phone, a vehicles, a fuel cell or a hydrogen storage tank.
19. The sensor of claim 14 , wherein the second layer has a thickness of 1 to 3 nm.
20. An electronic device, comprising the sensor of claim 19 , wherein the electronic device is a computer, a mobile phone, a vehicles, a fuel cell or a hydrogen storage tank.