Patent List

37. "Solid Oxide Fuel Cells with Cathode Functional Layers," K.J. Pan, M.H. Abdul Jabbar, D. Ding, and E.D. Wachsman, December 7, 2021, U.S. Patent 11,196,053.

36. “Metal Alloy Layers on Substrates, Methods of Making Same, and Uses Thereof”, L. Hu, E. D. Wachsman, Y. Gong, K. Fu, W. Luo, and C. Wang, June 22, 2021, U.S. Patent 11,043,696.

35. "Solid State Battery System Usable at High Temperatures and Methods of Use and Manufacture Thereof," Wachsman, et al, May 24, 2020, U.S. Patent Application No. 16/882,536

34. "Stable High Conductivity Oxide Electrolyte," E. D. Wachsman and A. Jolley, July 24, 2019, U.S. Patent Application 16/521462

33. “Alternative Anode for Solid Oxide Fuel Cells,” Wachsman, et al, March 2, 2021, U.S. Patent 10,938,052

32. “Durable and Redox-Stable Solid Oxide Fuel Cells,” Wachsman, et al, U.S. Patent Application 62/898343

31. Ordered Porous Solid Electrolyte Structures, Electrochemical Devices with Same, Methods of Making Same”, E. D. Wachsman, D. McOwen, Y. Gong, and Y. Wen August 15, 2020, U.S. Patent Application Serial No. 16/970,336

30. "Chromate Based Ceramic Anode Material for Solid Oxide Fuel Cells," M.H. Abdul Jabbar, E.D. Wachsman, and K.J. Pan, January 18, 2022, U.S. Patent 11,228,039.

29. “Interfacial Layers for Solid State Batteries and Methods of Making Same”, L. Hu, X. Han, E. D. Wachsman, and Y. Mo, Filed November 23, 2017, U.S. Patent Application Serial No. 2017/0338522.

28. “Solid State Lithium Sulfur Battery”, E. D. Wachsman, L. Hu, C. Wang, Y. Wen, K. Fu, and F. Han November 30, 2015, U.S. Patent Application Serial No. 62/131955.

27. “Ceramic Ion Conducting Structures and Methods of Fabricating Same and Use of Same”, G. Hitz, D. McOwen, and E. D. Wachsman, November 30, 2015, U.S. Patent Application Serial No. 62/260817.

26. “Multifunctional Potentiometric Gas Sensor Array with an Integrated Heater and Temperature Sensors,"B. M. Blackburn and E. D. Wachsman, May 11, 2015, U.S. Patent Application Serial No. 14/708,935.

25. “Atomic Layer Deposition Modifications for all Solid State Metal Ion Batteries”, L. Hu, X. Han, and E. D. Wachsman, March 12, 2015, U.S. Patent Application Serial No. 62/131955.

24. “Overcoming Interfacial Impedance in Solid State Batteries”, L. Hu, X. Han, E. D. Wachsman, and Y. Mo, Filed October 28, 2014, U.S. Patent Application Serial No. 62/069748.

23. “Ion Conducting Batteries with Solid State Electrolyte Materials”, E.D. Wachsman, L. Hu, and V. Thangadurai, April 14, 2020, U.S. Patent 10,622,666.

22. "Systems, Methods, and Devices for Direct Conversion of Methane”, E. D. Wachsman and D. Liu, January 7, 2020, U.S. Patent No. 10,525,407.

21. “High Conductivity NASICON Electrolyte for Room Temperature Solid-State Sodium Ion Batteries,” E.D Wachsman, G.T. Hitz, and K.T. Lee, April 30, 2019, U.S. Patent 10,276,892 B2

20. “Ionic Conductivity of NASICON through Aliovalent Cation Substitution,” E.D Wachsman and A.G. Jolley, April 9, 2019, U.S. Patent 10,256,504 B2.

19. "Electric-Field Enhanced Performance in Catalysis and Solid-State Devices Involving Gases," B. M. Blackburn, E. D. Wachsman, and M. F. Van Assche, February 5, 2019, U.S. Patent No. 10,197,521

18. “Methods of Fabricating Solid Oxide Fuel Cells," K-J. Pan, M. H. Abdul Jabar, D. Ding and E. D. Wachsman, January 22, 2019, U.S. Patent No. 10,186,710.

17. "Porous Ceramic Molten Metal Composite Solid Oxide Fuel Cell Anode," E. D. Wachsman and S. Bishop, August 7, 2018, U.S. Patent No. 10,044,057.

16. “Proton Conducting Membranes for Hydrogen Production and Separation," E. D. Wachsman, H. Yoon, T. Oh, and J. Li, December 27, 2016, U.S. Patent No. 9,527,044.

15. “Ceramic Anode Materials for Solid Oxide Fuel Cells," E.D. Wachsman, K.J. Pan, C. Gore, M.H. Abdul Jabbar, and H.S Yoon, December 20, 2016, U.S. Patent No. 9,525,179 B2.

14. “Advanced Materials and Designs for Low Temperature SOFCs," E. D. Wachsman, H. Yoon, K.T. Lee, M. Camaratta, J. S. Ahn, May 17, 2016, U.S. Patent No. 9,343,746.

13. “Fabrication of Dual Structure Ceramics by a Single Step Process," F. Basoli, S. Licoccia, E. Traversa, and E. D. Wachsman, May 10, 2016, U.S. Patent No. 9,334,195.

12. “Electric-Field Enhanced Performance in Catalysis and Solid-State Devices Involving Gases,"B. M. Blackburn, E. D. Wachsman, and M. F. Van Assche, May 19, 2015, U.S. Patent No. 9,034,170.

11. “Multifunctional Potentiometric Gas Sensor Array with an Integrated Heater and Temperature Sensors,"B. M. Blackburn and E. D. Wachsman, May 12, 2015, U.S. Patent No. 9,027,387.

10. “Proton Conducting Membranes for Hydrogen Production and Separation," E. D. Wachsman, H. Yoon, T. Oh, and J. Li, September 30, 2014, U.S. Patent No. 8,845,768.

9. “Concurrent O2 Generation and CO2 Control for Advanced Life Support,"E. D. Wachsman, K. L. Duncan and H. Hagelin-Weaver, December 24, 2013, U.S. Patent No. 8,613,848.

8, “Solid State Potentiometric Gaseous Oxide Sensor," E. D. Wachsman and A. Azad, July 29, 2003, U.S. Patent No. 6,598,596.

7. “Hydrogen Permeation Through Mixed Protonic-Electronic Conducting Materials," E. D. Wachsman and N. Jiang, October 2, 2001, U.S. Patent No. 6,296,687.

6. "Two-Phase Hydrogen Permeation Membrane," E. D. Wachsman and N. Jiang, May 22, 2001, U.S. Patent No. 6,235,417.

5. “Stable High Conductivity Functionally Gradient Compositionally Layered Solid State Electrolytes and Membranes," E. D. Wachsman, P. Jayaweera, and B. G. Pound, November 16, 1999, U.S. Patent No. 5,985,476.

4. “Stable High Conductivity Functionally Gradient Compositionally Layered Solid State Electrolytes and Membranes," E. D. Wachsman, P. Jayaweera, and B. G. Pound, March 10, 1998, U.S. Patent No. 5,725,965.

3. “Electrochemical Cells and Methods Using Perovskites," E. D. Wachsman, July 1, 1997, U.S. Patent No. 5,643,429.

2. “Method and Apparatus for Treating Nitrogen-Oxide Containing Gas Streams Using a Combined Electrochemical-Sorbent Approach," E. D. Wachsman, October 10, 1995, U.S. Patent No. 5,456,807.

1. “Sensor and Method for Accurately Measuring Concentrations of Oxide Compounds in Gas Mixtures," E. D. Wachsman, March 14, 1995, U.S. Patent No. 5,397,442.


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