Bimetal doped-metal oxide-based chemical sensors
The present invention generally relates to bimetal-doped, metal oxide-based sensors and platforms and integrated chemical sensors incorporating the same, methods of making the same, and methods of using the same.
1. A chemical sensor platform, comprising:
(a) an oxidized silicon membrane, comprising a silicon (Si) layer and a silicon oxide (SiO 2 ) layer, wherein the SiO 2 layer is located on top of the silicon layer and, comprises: a plurality of separate sensor areas;
(b) at least one heating element in contact with the SiO 2 layer and located near at least one edge of each sensor area;
(c) a plurality of pairs of electrical leads, each in contact with the SiO 2 layer, wherein one pair of electrical leads is at least partly located on each of the separate sensor areas;
(d) a plurality of metal oxide layers, wherein one metal oxide layer is located on each of the plurality of sensor areas and is in contact with at least a part of the pair of electrical leads located on the same area;
(e) a plurality of bimetal layers, wherein one bimetal layer is located in each sensor area and is in contact with the metal oxide layer in that area, wherein the bimetal layer, comprises: Au and Pd or Au and Pt; and
(f) a plurality of Si/SiO 2 connectors that are configured to provide membrane support and temperature insulation of the membrane.
2. The chemical sensor platform of claim 1 , wherein the bimetal layers, comprise: Au and Pd.
3. The chemical sensor platform of claim 1 , wherein the bimetal layers, comprise: Au and Pt.
4. The chemical sensor platform of claim 1 , wherein the membrane, further comprises: 4 Si/SiO 2 connectors.
5. The chemical sensor platform of claim 1 , wherein bimetal layer, comprises: Au and Pd and the molar ratio of Au to Pd is from 10:1 to 1:1.
6. The chemical sensor platform of claim 1 , wherein bimetal layer, comprises: Au and Pd and the molar ratio of Au to Pd is about 9:1.
7. The chemical sensor platform of claim 1 , wherein bimetal layer, comprises: Au and Pd and the molar ratio of Au to Pt is from 10:1 to 1:1.
8. The chemical sensor platform of claim 1 , wherein bimetal layer, comprises: Au and Pd and the molar ratio of Au to Pt is about 9:1.
9. The chemical sensor platform of claim 1 , wherein the metal oxide is SnO 2 .
10. The chemical sensor platform of claim 1 , wherein the at least one heating element, comprises: Pt.
11. The chemical sensor platform of claim 1 , wherein the plurality of pairs of electrical leads, comprise: Pt.
12. The chemical sensor platform of claim 1 , wherein there are 4 separate sensor areas, 1 heating element, 4 pairs of electrical leads, 4 metal oxide layers, and 4 bimetal layers.
13. The chemical sensor platform of claim 1 , wherein there are 4 separate sensor areas, 1 Pt heating element, 4 pairs of Pt electrical leads, 4 SnO 2 layers, and 4 bimetal layers.
14. The chemical sensor platform of claim 1 , wherein there are 4 separate sensor areas, 1 Pt heating element, 4 pairs of Pt electrical leads, 4 SnO.sub.2 layers, 4 bimetal layers, and 4 Si/SiO 2 connectors.
15. The chemical sensor platform of claim 1 , wherein there are 4 separate sensor areas, 1 Pt heating element, 4 pairs of Pt electrical leads, 4 SnO 2 layers, 4 bimetal layers, and 4 SiO 2 /Si/SiO 2 connectors.
16. The chemical sensor platform of claim 1 , wherein there are 4 separate sensor areas, 1 Pt/Ti heating element, 4 pairs of Pt/Ti electrical leads, 4 SnO 2 layers, and 4 bimetal layers.
17. The chemical sensor platform of claim 1 , wherein there are 4 separate sensor areas, 1 Pt/Ti heating element, 4 pairs of Pt/Ti electrical leads, 4 SnO 2 layers, 4 bimetal layers, and 4 Si/SiO 2 connectors.
18. The chemical sensor platform of claim 1 , wherein there are 4 separate sensor areas, 1 Pt/Ti heating element, 4 pairs of Pt/Ti electrical leads, 4 SnO 2 layers, 4 bimetal layers, and 4 SiO 2 /Si/SiO 2 connectors.
19. The chemical sensor platform of claim 1 , wherein there are 4 separate sensor areas, 1 Pt/Ti heating element, 4 pairs of Pt/Ti electrical leads, 4 SnO 2 layers, 4 bimetal layers comprising: Au and Pd, and 4 SiO 2 /Si/SiO 2 connectors.
20. The chemical sensor platform of claim 1 , wherein there are 4 separate sensor areas, 1 Pt/Ti heating element, 4 pairs of Pt/Ti electrical leads, 4 SnO 2 layers, 4 bimetal layers comprising Au and Pd, and 4 SiO 2 /Si/SiO 2 connectors.