PUBLICATIONS

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Web of Science
Research ID: E-5782-2010
Scopus ID: 7406297489
ORCID: 0000-0002-6188-2372
AD Scientific Index ID: 1347232
Research.com: D-Index & Metrics

Research Highlights

Published 20 review articles; 7 book chapters, and >600 refereed papers in Science (1), Nature (1), Nature Energy (1), Nature Comms (6), Energy Environ. Sci.(20), Adv. Mater.(15), Adv. Energy Mater.(20), Adv. Functional Mater.(13), Angew. Chem. Int. Ed.(7), Nano Letters (8), ACS Nano (8), JACS (2), Chem. Soc. Rev. (1), Mat. Sci. Eng. Report (2), Prog. in Mat. Sci.(1), Prog. in Energy & Comb. Sci.(1), Materials Today (1), Nano Energy (28), ACS Catalysis (5), Chem. Mater. (12), ChemSusChem (8), J. Mat. Chem. A (23), and so forth

Highly Cited Researcher (Clarivate Analytics)
Most Cited Researcher in Materials Science and Engineering (Elsevier Scopus Data)

  • Developed oxide proton conductors and solid oxide fuel cell anodes with high tolerance to coking & sulfur poisoning, offering potential for transformative impact on efficient conversion of a variety of fuels directly to electricity (Science, 326, 126, 2009; Nat. Comms, 2, 357, 2011; Energy Environ. Sci., 2011, 4, 4380; Adv. Mat., 18, 3318, 2006; 2 US Patents).
  • Designed and fabricated catalyst-coated SOFC cathodes with dramatically enhanced ORR activity and durability (Energy Env. Sci. 10, 964-971, 2017; Energy Env. Sci. 7, 552-575, 2014; 2 US Patents)
  • Designed and fabricated durable fiber-based SOFC cathodes (Adv. Energy Mater. 7, 1601890, 2017; Nano Energy 26, 2016, 90), electro-catalysts for efficient water splitting (Nat. Comms, 8, 14586, 2017; Adv. Mat., 2015, 27, 7150; Adv. Energy Mat.,2017, 7, 1602122), and high energy & power density electrodes for supercapacitors (Nano Letters, 13,3135-3139, 2013; Energy Storage Materials 7, 32-39, 2017; Nano Letters, 12, 3483-3490, 2012).
  • Advanced Raman techniques for in situ/operando characterization of electrode surfaces (JACS 2017; Energy Env. Sci., 7, 306, 2014; PCCP, 2015, 17, 21112; Adv. Science, 2016, 1500433; Chem. Mater., 2015, 27, 822-828).
  • Developed a process for electro-deposition of 3D porous electrodes (Adv. Mat. 15, 1610, 2003; 16, 237, 2004; Adv. F. Mat., 15, 582, 2005); a low-cost combustion CVD process for fabrication of thin films, nanoparticles, nanotubes, and nanostructured electrodes (Adv. Mat, 16, 353, 2004; 16, 256-260, 2004) with great flexibility in composition and microstructure;
  • Developed triazole-based polymer electrolytes of high proton conductivity at high temperatures with low humidity (Adv. Mat. 26, 1277-1282, 2014; JACS, 127, 10824, 2005; 5 US Patents);
  • Developed a class of disulfide polymerization electrodes for Li-batteries (JES, 138, 1891-1895, 1991; JES, 137, 750-759, 1990; 2 US Patents), leading to the founding of PolyPlus Battery Company focusing on advanced Li battery technology.

Journal Publications

SELECT A YEAR:

Review Articles

  1. Xiaxi Li, Kevin Blinn, Dongchang Chen, Meilin Liu, In-situ and Surface Enhanced Raman Spectroscopy Study of Electrode Materials in Solid Oxide Fuel Cells, Electrochemical Energy Reviews , (2018) 1 (3), 433-459 | DOI: 10.1007/s41918-018-0017-9
  2. Peng Tan, Wei Kong, Zongping Shao, Meilin Liu, Meng Ni, Advances in modeling and simulation of Li-air batteries Progress in Energy and Combustion Science 62 (2017) 155-189 | doi.org/10.1016/j.pecs.2017.06.001
  3. Yifeng Li, Jing Chen, Yun Zheng, Bo Yu, Yan Chen, Meilin Liu, Controlling cation segregation in perovskite-based electrodes for high electro-catalytic activity and durability Chemical Society Review , 2017 | DOI: 10.1039/C7CS00120G
  4. Peng Tan, Bin Chen, Haoran Xu, Houcheng Zhang, Weizi Cai, NI Meng, Meilin Liu, Zongping Shao, “Flexible Zn-and Li-Air Batteries: Recent Advances, Challenges, and Future Perspectives”, Energy Environ. Sci. , 2017, | DOI: 10.1039/C7EE01913K
  5. Peng Tan, Meilin Liu, Zongping Shao, Meng Ni, Recent advances in perovskite oxides as cathode materials for non-aqueous lithium-oxygen batteries Advanced Energy Materials , 2017 | DOI: 10.1002/aenm.201602674
  6. Yubo Chen, Wei Zhou, Dong Ding, Meilin Liu*, Francesco Ciucci, Moses Tade, and Zongping Shao*, Advances in cathode materials for solid oxide fuel cells: complex oxides without alkaline earth metal elements Advanced Energy Materials , 2015, 5, 1500537 | DOI: 10.1002/aenm.201500537
  7. Bote Zhao, Ran Ran, Meilin Liu*, and Zongping Shao*, A comprehensive review of Li4Ti5O12-based electrodes for lithium-ion batteries: the latest advancements and future perspectives , Materials Science and Engineering R 98 (2015) 1-71 | doi:10.1016/j.mser.2015.10.001
  8. Chao Su, Wei Wang, Meilin Liu*, Moses O. Tade, and Zongping Shao* , Progress and Prospects in Symmetrical Solid Oxide Fuel Cells with Two Identical Electrodes , Advanced Energy Materials , 2015, 5, 1500188 | DOI: 10.1002/aenm.201500188
  9. Dong Ding, Xiaxi Li, Samson Lai, Kirk Gerdes, and Meilin Liu*, Enhancing SOFC Cathode Performance by Surface Modification through Infiltration, Energy Environ. Sci. , 2014, 7, 552-575. PDF 
  10. Ruiguo Cao, Jang-Soo Lee, Meilin Liu*, and Jaephil Cho*, Recent Progress in Non-precious Catalysts for Metal-air Batteries , Advanced Energy Materials , 2012, 2, 816-829. PDF 
  11. M. Liu, M. Lynch, K. Blinn, F. Alamgir, and Y. Choi, Rational SOFC Material Design: New Advances and Tools , Materials Today Nov, 2011, Vol. 14, 534-546. PDF 
  12. M. K. Song, J. Park, F. Alamgir, J. P. Cho, and Meilin Liu, Nanostructured Electrodes for Li-Ion and Li-Air Batteries: the Latest Development, Challenges, and Perspectives , Materials Science Engineering: R: Reports , 2011, 72, 203-252. PDF 
  13. Z. Cheng, J. H. Wang, Y. M. Choi, L. Yang, M. C. Lin, and Meilin Liu , From Ni-YSZ to Sulfur-Tolerant Anodes: Electrochemical Behavior, Modeling, In Situ Characterization, and Perspectives, , Energy and Environmental Science , 2011, 4, 4380-4409. PDF 
  14. J. S. Lee, S. T. Kim, R. G. Cao, N. S. Choi, Meilin Liu. K. T. Lee, J. Cho, Metal-Air Batteries with High Energy Density: Li-Air versus Zn-Air , Advanced Energy Materials , 34-50, 2011. PDF 
  15. L. Besra and Meilin LiuA review on fundamentals and applications of electrophoretic deposition (EPD), Progress in Materials Science , 52, 1-61, 2007. PDF 
  16. Y. M. Choi, D. S. Mebane, J.-H. Wang, Meilin Liu, Continuum and Quantum-Chemical Modeling of Oxygen Reduction on the Cathode in a Solid Oxide Fuel Cell , Topics in Catalysis (3-4), 386-401 (2007). PDF 

Book Chapters

  1. Chendong Zuo, Mingfei Liu, and Meilin Liu, Chapter 2 – Solid Oxide Fuel Cells , in Sol-Gel Processing for Conventional and Alternative Energy, Advances in Sol-Gel Derived Materials and Technology (Editor: Lisa Klein),  Springer Science, NY 2012. pp. 7-36.  ISBN 978-1-4614-1956-3;  e-SBN 978-1-4614-1957-0; DOI 10.1007/978-1-4614-1957-0
  2. Heon-Cheol Shin and Meilin Liu, Preparation of Hierarchial (Nano/Meso/Macro) Porous Structures Using Electrochemical Deposition , in Progress in Corrosion Science and Engineering IIModern Aspects of Electrochemistry, 2012, Chapter 4, Volume 47, 297-330, DOI:10.1007/978-1-4419-6678-4_4
  3. J. H. Wang, Y. M. Choi, and M. Liu, “Quantum Chemical Calculations of Surface and Interfacial Reactions in Solid Oxide Fuel Cells”, In Quantum Chemical Calculations of Surfaces and Interfaces of Materials (Editors: V. A. Basiuk and P. Ugliengo), Chapter 14, p. 289-304, American Scientific Publishers, Los Angeles 2009.
  4. Ying Liu and Meilin Liu, “Nanostructured Electrodes Prepared by Combustion CVD for Solid Oxide Fuel Cells, Lithium-Ion Batteries, and Gas Sensors” , in Nanomaterials for Energy Storage Applications (Editor: Hari Singh Nalwa), Chapter 4, p. 130-155, American Scientific Publishers, Los Angeles 2009.
  5. Z. Cheng, J. H. Wang, and M. Liu, “Anodes”, in Solid Oxide Fuel Cells: Materials Properties and Performance (Editors: J. W. Fergus, R. Hui, X. G. Li, D. P. Wilkinson, and J. J. Zhang), Chapter 2, p.73-130, CRC Press 2008.
  6. Zhong Shi and Meilin Liu, Electrical and Electrochemical Analysis of Nanophase Materials ” , In Characterization of Nanophase Materials (Editor: Z. L. Wang), Chapter 6, p. 165-197, Wiley-VCH, Germany, 1999.
  7. M. Liu and Ashok Joshi, “Oxygen Sensors,” in ASM Engineered Materials Handbook, Vol. 4, Ceramics and Glass, 1131-1139 (1991).

Patents

  1. C. Evans, M. Liu, Y. Liu, Y. Zhou, “Solid Oxide Cell”, US Patent No. 18346038 , 2024.
  2. W. Zhang, M. Liu, Y. Liu, Y. Zhou, “Air electrodes of solid oxide electrochemical cells”, US Patent No. 11909085 , 2024.
  3. Z. Luo, Y. Zhou, Y. Liu, M. Liu, “Enhanced proton conduction and steam tolerance of a donor doped electrolyte for solid oxide electrolysis cells”, US Patent No. 17745200 , 2022.
  4. M Liu, R Murphy, “Proton-conduction electrolytes for reversible solid oxide cells”, US Patent No. 17/337,463 , 2022.
  5. W Zhang, M Liu, Y Liu, Y Zhou, “Air electrodes of solid oxide electrochemical cells”, US Patent No. 17/476,032 , 2022.
  6. M Liu, D Ding, Y Chen, L Zhang, “Catalyst coating of a perovskite film and particles exsoluted from the perovskite film”, US Patent No. 11,018,346 , May 25, 2021.
  7. M Liu, M Liu, T He, “Electrolyte formation for a solid oxide fuel cell device”, US Patent No. 10,811,717 , October 20, 2020.
  8. Dong Ding, Meilin Liu, “Electro-catalytic conformal coatings and method for making the same” , US Patent No. 9,914,649 , March 13, 2018.
  9. Mingfei Liu, Meilin Liu, Ting He ” Integrated natural gas powered SOFC systems “, US Patent No. 9,118,052 , August 25, 2015.
  10. Meilin Liu, Xiaobing Zhu, Min Kyu Song, John G. Muldoon, Kohei Hase ” Fuel cell electrodes with triazole modified polymers and membrane electrode assemblies incorporating same “, US Patent No. 9,012,108 , April 21, 2015.
  11. Mingfei Liu, Meilin Liu, Ting He, and Lei Yang “Optimization of BZCYYb Synthesis “, US Patent No. 8,993,200 , March 31, 2015.
  12. Lei Yang, Zhe Cheng, Ze Liu, and Meilin Liu, “Chemical compositions, methods of making the chemical compositions, and structures made from the chemical compositions”, US Patent No. 8,932,781 , January 3, 2015.
  13. Meilin Liu, Ze Liu, Mingfei Liu, Lifang Nie, David Mebane, Lane Wilson, and Wayne Surdoval, “Solid Oxide Fuel Cells Having Porous Cathodes Infiltrated with Oxygen-Reducing Catalysts”, US Patent No. 8,802,316 B1, August 12, 2014
  14. Xiaobing Zhu, Zhen Zhou, Meilin Liu, “Proton exchange membranes based on heterocycles and acids through an organic-inorganic hybrid process”, US Patent No. 8,586,259 B2, November 19, 2013
  15. Wen Li, Siwen Li, Meilin Liu, “Proton exchange membranes (PEM) based on hybrid inorganic-organic copolymers with grafted phosphoric acid groups and implanted metal cations,” US Patent No. 8,465,857 B2, June 18, 2013
  16. Siwen Li, Zhen Zhou, Yuelan Zhang, Meilin Liu, Wen Li, “Sulfonyl Grafted Heterocycle Materials for Proton Conducting Electrolytes”, US Patent No.: 7,964,651 B2, June 21, 2011.
  17. Meilin Liu, Xiaobing Zhu, Min Kyu Song, John Muldoon, and Kohei Hase, “Fuel Cell Electrodes with Triazole Modified Polymers and Membrane Electrode Assemblies Incorporating the Same”, US Patent No.: 7,947,410 B2, May 24, 2011.
  18. Siwen Li, Meilin Liu, Qunhui Sun, and Wen Li, “Hybrid Inorganic-Organic Polymer Electrolyte Membranes (PEM) Based on Alkyloxysilane Grafted Thermoplastic Polymers”, US Patent No.: 7,935,735 B2, May 3, 2011.
  19. Wen Li, Siwen Li, and Meilin Liu, “Proton exchange membranes (PEM) based on hybrid inorganic-organic copolymers with grafted phosphoric acid groups and implanted metal cations”, US Patent No. 7,811,693, October 12, 2010.
  20. Siwen Li, Meilin Liu, Qunhui Sun, Wen Li, “Polymer electrolyte membranes (PEMs) based on imidazole ring terminated flexible branches grafted on hybrid inorganic-organic polymers ” US Patent No. 7,851, 580 B2, December 14, 2010
  21. Siwen Li, Zhen Zhou, Meilin Liu, Wen Li, Kohai Hase, “Heterocycle grafted monomers and related polymers and hybrid inorganic-organic polymer membranes”, US Patent No.: 7,576,165, August 18, 2009.
  22. Joe K. Cochran, Kon Jiun Lee, Meilin Liu, William L. Rauch, “Hybrid Monolithic Fuel Cell”, US Patent No. 7, 220, 506, 5/22/2007.
  23. Siwen Li, Meilin Liu, Kohei Hase, Masatsugu Nakanishi, Wen Li, Junzo Ukai, “Phosphonic-acid grafted hybrid inorganic-organic proton electrolyte membranes (PEMs)”, US Patent No. 7,183,370 B2, 2/27/2007
  24. Meilin Liu, W. Rauch, Z. Peng, “O2 Sensor & Emission Control System”, US Patent No. 7, 018,673, 3/28/2006.
  25. Meilin Liu“Oxygen Sensor and Emission Control System”, US Patent No. 6,440,283, /27/2002.
  26. Ashok Joshi, Liang Jun Li, Meilin Liu, Anil Virkar, “Multi-functinonal and NOx Sensor for combustion systems”, US Patent No. 6,051,123, 4/18/2000
  27. Meilin Liu, Liangjun Li, “Multi-functional Sensors for Combustion Systems”, U. S. Patent No. 5,667,652, 9/16/1997.
  28. Yousheng Shen, Ashok V. Joshi, Meilin Liu, Kevin Krist, Anil V. Virkar, “Mixed ionic-electronic conducting composites for oxygen separation and electrocatalysis”, US. Patent No. 5,616,223, 4/1/1997.
  29. Meilin Liu, Ashok Joshi, Kevin Krist, Yousheng Shen, Anil V. Virkar, “Composite mixed ionic-electronic conductors for oxygen separation and electrocatalysis”, US. Patent No. 5,478,444, 12/26/1995.
  30. Meilin Liu, Jiemin Zhu, Ashok Joshi, “Electrochemical catalytic reduction cell for the reduction of NOx in an O2-containing exhaust emission” U. S. Patent No. 5,401,372, 3/1/1995.
  31. Ashok V. Joshi, Meilin Liu, Alf Bjorseth, Lars Renberg, “NaOH production from ceramic electrolytic cell”, U. S. Patent No. 5,290,405, 3/1/1994.
  32. Meilin Liu, A. Joshi, Kevin Krist, Yousheng Shen, “Mixed ionic-electronic conductors for oxygen seperation and electrocatalysis”, U. S. Patent No. 5,273,628, 12/28/1993.
  33. L. C. DeJonghe, Meilin Liu, Steven J. Visco, “Cell for making secandary batteries”, U. S. Patent No. 5,162,175, 11/10/1992.
  34. Meilin Liu, A. Joshi, “Sodium Ion Sensor”, U. S. Patent No. 5,120,422, 6/9/1992.
  35. L. C. De Jonghe, Meilin Liu, Catherine C. Mailhe, Steven J. Visco, “Lithium/organosulfur redox cell having protective solid electrolyte barrier formed on anode and method of making same”, U. S. Patent No. 4, 917,974 , 4/17/1990.

Selected Proceedings Papers (up to 2007)

  1. D. S. Mebane, E. Koep, M. Liu, “Modeling of MIEC cathodes: the effect of sheet resistance,” Ceramic Engineering and Science Proceedings, 27, 153-160 (2007).
  2. M. Liu, X. Lu, P. Faguy, “In-situ Characterization of Electrode Reactions in Solid Oxide Fuel Cells”, in Proceedings of The 8th International Symposium on SOFCs, Editor, S. C. Singhal and M. Dokiya, The Electrochemical Society, Pennington, NJ, PV 2003-07, pp.1132-1146, 2003.
  3. W. Rauch, J. Lee, J. Cochran, and M. Liu, “Fabrication of Honeycomb SOFCs”, in Proceedings of The 8th International Symposium on SOFCs, Editor, S. C. Singhal and M. Dokiya, The Electrochemical Society, Pennington, NJ, PV 2003-07, pp., 2003.
  4. S. Li, W. Rauch, M. Liu, A. Burke, and J. Winnick, “New Sulfur-Tolerant Electrode Materials for H2S Removal and SOFCs”, Solid State Ionic Devices III, Edited by E. Wachman, K. Swider-Lyons, M. F. Carolan, F.H. Garzon, M. Liu, and J. R. Stetter, The Electrochemical Society, Pennington, NJ, PV 2002-26, pp. 113-121 (2003).
  5. Y. Liu, B. Rauch, and M. Liu, “Nanostructured Electrodes Fabricated by Combustion CVD”, Solid State Ionic Devices III, Edited by E. Wachman, K. Swider-Lyons, M. F. Carolan, F.H. Garzon, M. Liu, and J. R. Stetter, The Electrochemical Society, Pennington, NJ, PV 2002-26, pp. 205-214 (2003).
  6. E. Koep, W. Rauch, and M. Liu, “Investigation of Electrode Kinetics Using Patterned Electrodes”, Solid State Ionic Devices III, Edited by E. Wachman, K. Swider-Lyons, M. F. Carolan, F.H. Garzon, M. Liu, and J. R. Stetter, The Electrochemical Society, Pennington, NJ, PV 2002-26, pp.319-328 (2003).
  7. X. Lu, P. Faguy, and M. Liu, “In-Situ FTIR Emission Spectroscopy of Cathodes for SOFCs”, Solid State Ionic Devices III, Edited by E. Wachman, K. Swider-Lyons, M. F. Carolan, F.H. Garzon, M. Liu, and J. R. Stetter, The Electrochemical Society, Pennington, NJ, PV 2002-26, pp.340-353 (2003).
  8. H. C. Shin, Z. Shi, J. Gole, and M. Liu, “Mesoporous Electrodes for Lithium Batteries”, Solid State Ionic Devices III, Edited by E. Wachman, K. Swider-Lyons, M. F. Carolan, F.H. Garzon, M. Liu, and J. R. Stetter, The Electrochemical Society, Pennington, NJ, PV 2002-26, pp. 518-525 (2003).
  9. C. Xia, B. Rauch, J. Cochran, J. Lee, and M. Liu, “Recent Advances in Design and Fabrication of Low-Temperature SOFCs”, in Proceedings of Symposium on Fuel Cells: Bridging Processing and Performance, The First International Conference on Materials Processing for Properties and Performance, Singapore, Ed. H. A. Khor, S. Y. Zhang, P. Hing, and F. Boey, pp.419-435, August 1-3, 2002.
  10. F. Chen and M. Liu, “Preparation of Mesoporous Yttria-Stabilized Zirconia (YSZ) and YSZ-NiO Using Docecylbenzensulfonic Acid (DBSA) as Surfactant”, in Proceedings of the 4th International Symposium on Ionic and Mixed Conductors, (2001).
  11. F. Chen, C. Xia, and M. Liu, “Meso- and Macro-porous Materials for Advanced Power Sources and Gas Sensing”, in the Proceedings of First International Symposium on Nanomaterials”, Beijing, China, July 15-18, 2001, pp.55-64.
  12. X. Lu, C. Xia, P. Faguy, and M. Liu, “Investigations into Catalytic Properties of Nano-structured Surfaces using in situ Time-Resolved DRIFTS “, in Solid State Ionic Devices II, E. Wachman, W, Weppner, E. Traversa, P. Vanysek, M. Liu, and B.V. Ratnakumar, The Electrochemical Society, Pennington, NJ, PV 00-15, p. 401-407 (2000).
  13. W. Rauch, G. Hunter, and M. Liu, “Fabrication of a Highly Selective Gas Sensor Using a Zeolite Semi-permeable Membrane”, in Solid State Ionic Devices II, E. Wachman, W, Weppner, E. Traversa, P. Vanysek, M. Liu, and B.V. Ratnakumar, The Electrochemical Society, Pennington, NJ, PV 00-15, p.408-416 (2000).
  14. F. Chen and M. Liu, “Mesoporous SnO2 for gas sensors”, in Solid State Ionic Devices II, E. Wachman, W, Weppner, E. Traversa, P. Vanysek, M. Liu, and B.V. Ratnakumar, The Electrochemical Society, Pennington, NJ, PV 00-15, p.417-423 (2000).
  15. Z. Peng, Z. Shi, and M. Liu, “Preparation and Characterization of Mesoporous Electrodes for Electrochemical Applications”, in the Proceedings of the First Asian Conference on Solid State Ionic Devices, India, March 22-24, 2000.
  16. Z. Shi and M. Liu, “Powder Microelectrode Techniques for Rapid Characterization of New Electrode Materials”, in Proceeding of the Symposium on Innovative Processing of Ceramics, Metals, and Glasses, The 102nd Annual Meeting & Exposition of The Acerican Ceramic Society, St. Louis, USA, 2000.
  17. W. Rauch and M. Liu, “Preparation and Characterization of Perm-selective Membranes for Gas Sensors”, in Proceeding of the Symposium on Innovative Processing of Ceramics, Metals, and Glasses, The 102nd Annual Meeting & Exposition of The Acerican Ceramic Society, St. Louis, USA, 2000.
  18. F. Chen, W. L. Rauch, Z. Shi, and M. Liu, “Preparation of Mesoporous electrodes for electrochemical and catalytic applications”, In Innovative Porcessing and Synthesis of Ceramics, Glasses, and Composites IV, Ceramic Transactions, Volume 115. Eds. N. Bansal and J.P. Singh. The American Ceramic Society, Westerville, OH, 2000. p469-479.
  19. X. Lu and M. Liu, “Stability and Catalytic Properties of MIEC Membranes for Oxygen Permeation and Methane Conversion”, in Solid State Ionic Devices, E. Wachsman, M. Liu, J. Ackridge, and N. Yamazoe, Editors, The Electrochemical Society, PV 99-13, p.139-150 (1999).
  20. U. Balachandran, B. Ma, P.S. Maiya, J.T. Dusek, J.J. Picciolo, J. Guan, S.E. Dorris, and M. Liu, “Development of Mixed-Conducting Ceramics for Gas Separation Applications,” Mat. Res. Soc. Symp. Proc., Vol. 548, 1999, pp.545-550.
  21. U. Balchandran, , B. Ma, P. Maiya, R. Mieville, J. Dusek, J. Picciolo, J. Guan, S. Dorris, and M. Liu, “Mixed-Conducting Membranes for Hydrogen Separation”, in Solid State Ionic Devices, E. Wachsman, M. Liu, J. Ackridge, and N. Yamazoe, Editors, The Electrochemical Society, PV 99-13, p 61-75 (1999).
  22. M. Liu, B. Rauch, and F. Chen, “Transport and Catalytic Properties of Rare Earth Metal Oxide-Containing Materials in Solid State Ionic Devices”, in proceedings of the International Conference on Rear Earth Metal and Oxides, Chicago, IL, July 10-15, (1999).
  23. J. Guan, S. E. Dorris, U. Balachandran, and M. Liu, “Development of Mixed-Conducting Ceramic Membranes for Hydrogen Separation,” Ceramic Transactions, Electrochemistry of Glass and Ceramics, S.K. Sundaram, D.F. Bickford, and E.J. Hornyak, Jr., Editors, The American Ceramic Society, Westerville, OH, Vol. 92, 1999, p265.
  24. G. Hunter, P. Neudeck, and G. Fralick, L. Chen, C. C. Liu, Q. H. Wu, M. S. Sawayda, Z. Jin, J. Hammond, D. Makel, W. Rauch, M. Liu, and G. Hall, “Microfabricated Chemical Gas Sensors for Aerospace Applications”, in proceedings of Sensor Expo 1999.
  25. W. Rauch, F. Chen, and M. Liu, “Development of MIEC Electrodes for Solid Oxide Fuel Cells”, in the Proceedings of DoE/EPRI/GRI Workshop on Fuel Cells, San Francisco, CA, May 1998, p.1-15.
  26. G. W. Hunter, L. Y. Chen, P. G. Neudeck, D. Knight, C. C. Liu, Q. H. Wu, H. J. Zhou, D. Makel, M. Liu, and W. L. Rauch, “Chemical Sensors for Aeronautic and Space Applications II”, Symposium Proceedings on Chemical Sensors, 1998.
  27. M. Liu, “Misconceptions on Mixed Ionic-Electronic Conductors”, in the Proceedings of the US-Japan Workshop on Electrically Active Interfaces, Ed. by H. L. Tuller and H. Yanagida, MIT, March 17-19, 1998, p. 205-208 (1998).
  28. J. Guan, U. Balachandran, S.E. Dorris, and M. Liu, “Development of Proton-conducting Membranes for Separating Hydrogen from Gas Mixtures,” Proceeding of American Institute of Chemical Engineers (AIChE), Spring Meeting, New Orleans, LA, Mar 8-12, 1998.
  29. K. Mulvaney, M. White, and M. Liu, “Preparation of Permselective Membranes for High Selectivity Gas Sensors,” in Ceramic Sensors, H. Anderson, M. Liu, and N. Yamazoe, Editors, The Electrochemical Society, Pennington, NJ, 96-27, p. 196-218 (1997).
  30. S. Namjoshi, Z. L. Wang, and M. Liu, “Microscopy of Bismuth Oxide Based Mixed Ionic-Electronic Conductors,” in Ceramic Sensors, H. Anderson, M. Liu, and N. Yamazoe, Editors, The Electrochemical Society, Pennington, NJ, PV 96-27, p. 171-185 (1997).
  31. Rauch and M. Liu, “A New Electrode Material for Barium Cerate Ceramic Electrolyte,” in Ceramic Sensors, H. Anderson, M. Liu and N. Yamazoe, Editors, The Electrochemical Society, Pennington, NJ, PV 96-27, p. 186-195 (1997).
  32. Z. L. Wu and M. Liu, “Silver-Bi1.5Y0.5O3 Composite Electrodes for Solid Oxide Fuel Cells,” in Ceramic Sensors, H. Anderson, M. Liu and N. Yamazoe, Editors, The Electrochemical Society, Pennington, NJ, PV 96-27, p. 28-39 (1997).
  33. M. Liu and Z. Wu, “M. Liu and Z. L. Wu, “Impedance Spectroscopy of Cells with Porous MIEC Electrodes”, in Ionic and Mixed conducting Ceramics, T.A. Ramanarayanan, H. L. Tuller and W. Worrell, Editors, The Electrochemical Society, Pennington, NJ, Vol. 97-12, (1997).
  34. J. Cho and M. Liu, “New Development of Glass-Polymer Electrolytes for Rechargeable Lithium Batteries”, in Lithium Polymer Batteries, J. Owen and M. Armand, Editors, The Electrochemical Society, Pennington, NJ, PV 96-2, 1997.
  35. U. Balachandran, B. Ma, P. Maiya, R. Mieville, J. Dusek, J. Picciolo, J. Guan, S. Dorris, and M. Liu, “Development of Mixed-Conducting Oxides for Gas Separation”, in the Preceedings of the 4th International Union of Materials Research Societies’ International Conference in Asia, Chiba, Japan, September 16-18, 1997.
  36. Z. Wu and M. Liu, “Steady-State Electrode Kinetics of Porous Mixed Ionic-Electronic Conducting Electrodes,” in the Proceedings of the 192nd Electrochem. Soc. Meeting (Paris, France), Vol. 97-2, (1997).
  37. M. Liu, H. Hu, and W.L. Rauch, ” Ionic and Electronic Transport in BaCe0.8Gd0.2O3 Solid Electrolyte,” in Ceramic Membranes, H. Anderson, A. Khandkar, and M. Liu, Editors, Electrochemical Society, Pennington, NJ, PV 95-24, p. 192-220 (1996).
  38. W. L. Rauch and M. Liu, “Effect of Microstructure and Dopants on Electrochemical Properties of Barium Cerate-Based Electrolytes,” in Ceramic Membranes, H. Anderson, A. Khandkar, and M. Liu, Editors, The Electrochemical Society, Pennington, NJ, PV 95-24, p. 146-165 (1996).
  39. V. Agarwal and M. Liu, “Preparation of BaCeO3-Based Electrolyte,” in Ceramic Membranes, H. Anderson, A. Khandkar, and M. Liu, Editors, The Electrochemical Society, Pennington, NJ, PV 95-24, p. 177-191 (1996).
  40. M. Liu, H. Hu, V. Agarwal, W. Rauch, and Z. L. Wu, “Development of Mixed-Conducting Electrodes Based on BaCeO3 for SOFCs,” in the Proceedings of 1996 EPRI/GRI Workshop on Fuel Cells, 9, p. 1-31 (1996).
  41. J. Guan and M. Liu, “Preparation and Characterization of LixMn2O4 Electrode Materials for Lithium Ion Batteries”, in Ceramic Transitions – Role of Ceramics in Advanced Electrochemical Systems, P.N. Kumta, G.S. Rohrer, and U. Balachandran, Editors, The American Ceramic Society, Westerville, OH, Vol. 65, p. 149-161 (1996).
  42. H. Hu and M. Liu, “Electrocatalytic Activity of Ag-Based electrodes for Solid State Electrochemical Devices”, in Ceramic Transitions, P.N. Kumta, G.S. Rohrer, and U. Balachandran, Editors, The American Ceramic Society, Westerville, OH, Vol. 65, p. 355-372 (1995).
  43. W. Rauch and M. Liu, “Microstructure and Properties of Barium Cerate Based Electrolytes for Solid Oxide Fuel Cells”, in Ceramic Transitions, P.N. Kumta, G.S. Rohrer, and U. Balachandran, Editors, The American Ceramic Society, Westerville, OH, Vol. 65, p. 266-279 (1995).
  44. M. Liu, H. Hu, W. Rauch, Z. Wu, and V. Agarawa, “Preparation and Characterization of BaCeO3-Based Materials for SOFCs”, in the Proceedings of 1995 EPRI/GRI Workshop on Fuel Cells, 8, p. 1-21 (1995).
  45. Y. Shen, M. Liu, A. Joshi, and K. Krist, “Composite Ceramic Membranes for O2-Separation”, in Ionic and Mixed conducting Ceramics, T.A. Ramanarayanan, H. L. Tuller and W. Worrell, Editors, The Electrochemical Society, Pennington, NJ, Vol. 94-12, p. 574-597 (1994).
  46. M. Liu, W. Rauch, Z. Wu, H. Hu, and V. Agarwal, “Development of BaCeO3-Based Materials for Intermediate-Temperature SOFCs”, in the Proceedings of 1994 EPRI/GRI Workshop on Fuel Cells, 12, p. 1-18 (1994).
  47. M. Liu, S. J. Visco, and L. C. De Jonghe, “In-situ Characterization of Interfacial and Bulk Properties of Lithium Polymer Batteries Using Four-Probe DC Techniques”, MRS Symp. Proceedings on Solid State Ionics, Vol. 293, p. 107-116 (1993).
  48. M. Liu, I. Bae, and A. Joshi, “Amperometric Sensors Based on Ceramic Membranes”, in Chemical Sensors, M. Butler and T. Ricco, Editors, The Electrochemical Society, Pennington, NJ, Vol. 93-7, p. 275-280 (1993).
  49. M. Liu, L. Li, and A. Joshi, “Multifunctional Sensors Based on Ceramic Electrolytes”, in Chemical Sensors, M. Butler and T. Ricco, Editors, The Electrochemical Society, Pennington, NJ, Vol. 93-7, p. 421-427 (1993).
  50. M. Liu, Y. Shen, J. Ludlow, A. Joshi, and K. Krist, ” Novel Mixed Ionic-Electronic Conductors and the Use for Oxygen Separation,” in the Proceedings of International Gas Research Congress, 435-446 (1992).
  51. M. Liu, “Electrode Kinetics and Transport Properties of Mixed Ionic-Electronic Conductors,” in Ionic and Mixed Conducting Ceramics, T. A. Ramanarayanan and H. L. Tuller, Editors, The Electrochemical Society, Pennington, NJ, Vol. 91-12, 191-215 (1991).
  52. M. Liu, “Theoretical Assessment of Oxygen Separation Rate of Mixed Ionic-Electronic Conductors,” in Ionic and Mixed Conducting Ceramics, T. A. Ramanarayanan and H. L. Tuller, Editors, The Electrochemical Society, Pennington, NJ, Vol. 91-12, 95-109 (1991).
  53. M. Liu and A. Joshi, “Characterization of Mixed Ionic Electronic Conductors,” in Ionic and Mixed Conducting Ceramics, T. A. Ramanarayanan and H. L. Tuller, Editors, The Electrochemical Society, Pennington, NJ, Vol. 91-12, 95-109, (1991).
  54. Khandkar, S. Elangovan, M. Liu, and M. Timper, “Thermal Cycling Behavior of Solid Oxide Fuel Cells,” in High Temperature Electrode Materials and Characterization, D. Macdonald and A. Khandkar, Editors, The Electrochemical Socity, Pennington, NJ, Vol. 91-6, 175-190 (1991).
  55. M. Liu, S. J. Visco, and L. C. De Jonghe, “Impedance Spectroscopy Studies of Organo-sulfides and Sulfur-Containing Redox Polymerization Electrodes,” in Primary and Secondary Lithium Batteries, K. M. Abraham and M. Solomon, Editors, The Electrochemical Society, Pennington, NJ, p.62-79 (1991).
  56. Elangovan, a. Khandkar, M. Liu, and M. Timper, “Solid State Interface Reaction in Solid Oxide Fuel Cells: An Electrochemical Impedance Spectroscopy Study,” in High Temperature Electrode Materials and Characterization, D. Macdonald and A. Khandkar, Editors, The Electrochemical Socity, Pennington, NJ, Vol. 91-6, 191-199 (1991).
  57. M. Liu, J. Zhu, A. Virkar, A. Khandkar, and A. Joshi, “Effect of Supporting Medium on Thermoelectric Generators Based on Solid Electrolytes,” in High Temperature Electrode Materials and Characterization, D. Macdonald and A. Khandkar, Editors, The Electrochemical Socity, Pennington, NJ, Vol. 91-6, 137-157 (1991).
  58. M. Liu, S. J. Visco, and L. C. De Jonghe, “Electrochemical Investigations of a Class of Novel Solid Redox Polymerization Electrodes,” in Rechargeable Lithium Batteries, S. Subbarao, V. R. Koch, B. Owens, and W. H. Smyrl, Editors, The Electrochemical Society, Pennington, NJ, Vol. 90-5, p. 220-232 (1990).
  59. M. Liu, S. J. Visco, and L. C. De Jonghe, “All-Solid-State Thin-Film Rechargeable Lithium Batteries with Novel Redox Polymerization Cathodes,” in Rechargeable Lithium Batteries, S. Subbarao, V. R. Koch, B. Owens, and W. H. Smyrl, Editors, The Electrochemical Society, Pennington, NJ, Vol. 90-5, p. 233-245 (1990).
  60. M. Liu, A. Khandkar, and M. Timper, “Planar Solid-Oxide Fuel Cells: Design, Characterization, and Investigation,” in the Proceedings of The 1990 National Fuel Cell Congress, Phoenix, Arizona, p. 527-531 (1990).
Liu Research Group
School of Materials Science & Engineering
Georgia Institute of Technology
771 Ferst Drive
Atlanta, GA 30332-0245
E-mail: meilin.liu@mse.gatech.edu
Phone: 404-894-6114
Fax: 404-894-9140
Office:
J. E. Love Building, Room 258
771 Ferst Drive
Atlanta, GA 30332-0245
Lab:
Molecular Science & Engineering Building (MoSE), Room 3270-3284
901 Atlantic Dr NW
Atlanta, GA 30332-0420