Travis Anderson
Chemist

Biography
Travis M. Anderson is a Distinguished Member of the Technical Staff at Sandia National Laboratories. He received his B.S degree in Chemistry from Mercer University in 1997 and his Ph.D. degree in Inorganic Chemistry from Emory University in 2002. His research interests include synthetic inorganic chemistry, battery materials aging, and flow batteries.
Research Interests
- Synthetic inorganic chemistry (coordination chemistry and cluster chemistry)
- Flow batteries (prototyping, non-aqueous chemistries)
- Battery materials aging (thermal and lithium primary)
Education
- Ph.D. in Chemistry, Emory University (Atlanta, Georgia), 2002
- B.S. in Chemistry, Mercer University (Macon, Georgia), 1997
Publications
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Wittman, R., Pratt, H., Anderson, T., Preger, Y., & Preger, Y. (2021). Gas Evolution from Mixed-AcidFlow Batteries [Conference Poster]. https://doi.org/10.2172/1893282 Publication ID: 76304
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Walder, B., Conradi, M.S., Borchardt, J., Merrill, L., Sorte, E.G., Deichmann, E.J., Anderson, T., Alam, T.M., Harrison, K., & Harrison, K. (2021). NMR spectroscopy of coin cell batteries with metal casings. Science Advances, 7(37). https://doi.org/10.1126/sciadv.abg8298 Publication ID: 79463
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Anderson, T., Cammack, C., Pratt, H., & Pratt, H. (2021). An Overview and Recent Progress in Metal-Based Charge Carriers for Non-aqueous Flow Batteries [Presentation]. https://www.osti.gov/biblio/1855916 Publication ID: 77632
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Cammack, C., Pratt, H., Small, L., Anderson, T., & Anderson, T. (2021). A higher voltage Fe(ii) bipyridine complex for non-aqueous redox flow batteries. Dalton Transactions, 50(3), pp. 858-868. https://doi.org/10.1039/d0dt03927f Publication ID: 71247
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Lambert, T., Spoerke, E., Fujimoto, C., Anderson, T., Frischknecht, A., Small, L., Chalamala, B.R., & Chalamala, B.R. (2020). GRID ENERGY STORAGE R&D AT SANDIA [Presentation]. https://www.osti.gov/biblio/1832676 Publication ID: 71865
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Cammack, C., Pratt, H., Small, L., Anderson, T., & Anderson, T. (2020). Tunable Iron(II) Bipyridine Complexes for Non-Aqueous Redox Flow Batteries [Presentation]. https://www.osti.gov/biblio/1821285 Publication ID: 74890
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Anderson, T., Cammack, C., Small, L., Pratt, H., & Pratt, H. (2020). Higher Voltage Iron Bipyridines for Non-Aqueous Redox Flow Batteries [Presentation]. https://www.osti.gov/biblio/1820893 Publication ID: 74839
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VanGelder, L., Pratt, H., Anderson, T., Matson, E., & Matson, E. (2020). Metal Oxide Clusters as Charge Carriers for Nonaqueous [Presentation]. https://www.osti.gov/biblio/1820554 Publication ID: 74829
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Deichmann, E.J., Cammack, C., Merrill, L., Harrison, K., Rosenberg, S.G., Jungjohann, K.L., Anderson, T., & Anderson, T. (2020). Investigating the Chemical SEI of New and Aged Commercial Li Primary Batteries [Conference Presenation]. https://doi.org/10.2172/1824274 Publication ID: 71095
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Koehler, A., Ebrish, M., Gallagher, J., Anderson, T., Noesges, B., Brillson, L., Gunning, B., Hobart, K.D., Foster, G.M., Kub, F., & Kub, F. (2020). Recovery from plasma etching-induced nitrogen vacancies in p-type gallium nitride using UV/O3treatments. Applied Physics Letters, 117(8). https://doi.org/10.1063/5.0021153 Publication ID: 74733
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Turner, N.A., Freeman, M.B., Pratt, H., Crockett, A.E., Jones, D.S., Anstey, M.R., Anderson, T., Bejger, C.M., & Bejger, C.M. (2020). Desymmetrized hexasubstituted [3]radialene anions as aqueous organic catholytes for redox flow batteries [Presentation]. Chemical Communications. https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85081150777&origin=inward Publication ID: 74828
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Pratt, H., Small, L., Anderson, T., & Anderson, T. (2019). Diagnostics for Failure Modes in Non-Aqueous Flow Batteries [Conference Poster]. https://www.osti.gov/biblio/1642760 Publication ID: 65531
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Small, L., Pratt, H., Anderson, T., & Anderson, T. (2019). Elucidating Molecular Transport through Membranes in Flow Batteries [Conference Poster]. https://www.osti.gov/biblio/1662014 Publication ID: 65004
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Small, L., Pratt, H., Anderson, T., & Anderson, T. (2019). Elucidating Molecular Transport through Membranes in Flow Batteries [Presentation]. https://www.osti.gov/biblio/1646004 Publication ID: 65087
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Small, L., Pratt, H., Fujimoto, C., Anderson, T., & Anderson, T. (2019). Crossover Mechanisms in Polymer Membranes for Redox Flow Batteries [Conference Poster]. https://www.osti.gov/biblio/1639860 Publication ID: 68247
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Small, L., Pratt, H., Anderson, T., & Anderson, T. (2019). Ions on the Loose: Quantifying Crossover in Aqueous Soluble Organic Redox Flow Batteries [Conference Poster]. https://www.osti.gov/biblio/1639776 Publication ID: 68084
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Lee, S.B., Mitra, K., Pratt, H., Anderson, T., Ramadesigan, V., Chalamala, B.R., Subramanian, V.R., & Subramanian, V.R. (2019). Open data, models, and codes for vanadium redox batch cell systems: A systems approach using zero-dimensional models. Journal of Electrochemical Energy Conversion and Storage, 17(1). https://doi.org/10.1115/1.4044156 Publication ID: 68620
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Small, L., Pratt, H., Anderson, T., & Anderson, T. (2019). Crossover in membranes for aqueous soluble organic redox flow batteries. Journal of the Electrochemical Society, 166(12), pp. A2536-A2542. https://doi.org/10.1149/2.0681912jes Publication ID: 66131
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Anderson, T., Small, L., Pratt, H., Fujimoto, C., & Fujimoto, C. (2019). Sandia Flow Battery Prototyping and Testing [Conference Poster]. https://www.osti.gov/biblio/1593529 Publication ID: 64376
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Stirrup, K., Rodriguez, M.A., Coker, E., Griego, J.J.M., Anderson, T., & Anderson, T. (2018). MONITORING OF FES2 REACTIONS USING HIGH-TEMPERATURE XRD COUPLED WITH GAS CHROMATOGRAPHY [Conference Poster]. https://doi.org/10.1017/S0885715619000320 Publication ID: 60127
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Small, L., Pratt, H., Anderson, T., & Anderson, T. (2018). Relating Membrane Materials Properties to Crossover Mechanisms in Flow Batteries [Conference Poster]. https://www.osti.gov/biblio/1592319 Publication ID: 59084
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Small, L., Pratt, H., Anderson, T., & Anderson, T. (2018). Ions on the Loose: Quantifying Crossover in Aqueous Soluble Organic Redox Flow Batteries [Conference Poster]. https://www.osti.gov/biblio/1592320 Publication ID: 59085
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Anderson, T. (2018). Monitoring of FeS2 reactions using high temperature XRD coupled with Gas Chromatography (GC) [Conference Poster]. https://www.osti.gov/biblio/1574415 Publication ID: 63491
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Dellinger, J., Anderson, T., Cassano, C., Serrano, J., Ferreira, S., Fresquez, A., Keane, C., Forsberg, K.M., Schindelholz, M.E., & Schindelholz, M.E. (2018). Acoustic and Structural Vibration Monitoring of Thermal Batteries to Detect Events and Margin Change [Conference Poster]. https://www.osti.gov/biblio/1529456 Publication ID: 62669
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Wesolowski, D., Sanchez, M., Allen, A., Staiger, C.L., Missert, N.A., Ambrosini, A., Jarek, R., Anderson, T., & Anderson, T. (2018). Accelerated Aging of Li(Si)/CoS2 Thermal Batteries [Conference Poster]. https://www.osti.gov/biblio/1526133 Publication ID: 62516
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Allcorn, E., Nagasubramanian, G., Montoya, B., Height, H., Apblett, C., Anderson, T., & Anderson, T. (2018). Film Coating of Electrodes for High Power Density Thermal Batteries [Conference Poster]. https://www.osti.gov/biblio/1527075 Publication ID: 62594
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Allcorn, E., Nagasubramanian, G., Montoya, B., Height, H., Apblett, C., Anderson, T., & Anderson, T. (2018). Film Coating of Electrodes for High Power Density Thermal Batteries [Conference Poster]. https://www.osti.gov/biblio/1511788 Publication ID: 61914
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Dellinger, J., Anderson, T., Cassano, C., Serrano, J., Ferreira, S., Fresquez, A., Keane, C., Forsberg, K.M., Schindelholz, M.E., & Schindelholz, M.E. (2018). Event Detection via Acoustic Monitoring of Percussion Primers for Margin Analysis [Conference Poster]. https://www.osti.gov/biblio/1510562 Publication ID: 61801
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Wesolowski, D., Sanchez, M., Allen, A., Staiger, C.L., Missert, N.A., Ambrosini, A., Jarek, R., Anderson, T., & Anderson, T. (2018). Accelerated Aging of Li(Si)/CoS2 Thermal Batteries [Conference Poster]. https://www.osti.gov/biblio/1510674 Publication ID: 61760
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Small, L., Pratt, H., Staiger, C.L., Anderson, T., & Anderson, T. (2018). Chemically Mediated Redox Flow Batteries [Conference Poster]. https://www.osti.gov/biblio/1504818 Publication ID: 61339
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Lee, S.B., Pratt, H., Anderson, T., Mitra, K., Chalamala, B.R., Subramanian, V.R., & Subramanian, V.R. (2018). Estimation of transport and kinetic parameters of vanadium redox batteries using static cells. ECS Transactions, 85(5), pp. 43-64. https://doi.org/10.1149/08505.0043ecst Publication ID: 61101
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Small, L., Pratt, H., Staiger, C.L., Anderson, T., & Anderson, T. (2017). Chemically Mediated Redox Flow Batteries for Modular High Power Energy Storage [Conference Poster]. https://www.osti.gov/biblio/1477916 Publication ID: 53540
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Small, L., Pratt, H., Staiger, C.L., Anderson, T., & Anderson, T. (2017). MetILs3: A Strategy for High Density Energy Storage Using Redox-Active Ionic Liquids. Advanced Sustainable Systems, 1(9). https://doi.org/10.1002/adsu.201700066 Publication ID: 53074
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Martin, S., Pratt, H., Anderson, T., & Anderson, T. (2017). Screening for High Conductivity/Low Viscosity Ionic Liquids Using Product Descriptors. Molecular Informatics, 36(7). https://doi.org/10.1002/minf.201600125 Publication ID: 49501
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Small, L., Pratt, H., Staiger, C.L., Fujimoto, C., Anderson, T., & Anderson, T. (2017). MetILs3: A Strategy for Maximizing Energy Density in Flow Battery Electrolytes [Conference Poster]. https://www.osti.gov/biblio/1456497 Publication ID: 55713
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Small, L., Pratt, H., Staiger, C.L., Martin, R., Anderson, T., Chalamala, B.R., Soundappan, T., Tiwari, M., Subarmanian, V., & Subarmanian, V. (2017). Vanadium Flow Battery Electrolyte Synthesis via Chemical Reduction of V2O5 in Aqueous HCl and H2SO4. https://doi.org/10.2172/1342368 Publication ID: 53009
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Sava Gallis, D., Pratt, H., Anderson, T., Chapman, K., & Chapman, K. (2016). Electrochemical activity of MOFs as positive electrode for Na-ion batteries [Conference Poster]. https://www.osti.gov/biblio/1376779 Publication ID: 51744
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Small, L., Anderson, T., Pratt, H., Fujimoto, C., & Fujimoto, C. (2016). Materials for Multi-Electron Redox Flow Processes [Conference Poster]. https://www.osti.gov/biblio/1377707 Publication ID: 51689
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Rodriguez, M.A., Coker, E., Griego, J.J.M., Mowry, C., Pimentel, A., Anderson, T., & Anderson, T. (2016). Monitoring of CoS2 reactions using high-temperature XRD coupled with gas chromatography (GC). Powder Diffraction, 31(2), pp. 90-96. https://doi.org/10.1017/s0885715616000166 Publication ID: 52819
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Wesolowski, D., Allen, A., Staiger, C.L., Ambrosini, A., Missert, N.A., Peebles, H., Anderson, T., & Anderson, T. (2016). Accelerated Aging of Li(Si)/FeS2 Thermal Batteries [Conference Poster]. https://www.osti.gov/biblio/1364692 Publication ID: 50082
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Sava Gallis, D., Pratt, H., Anderson, T., Chapman, K., & Chapman, K. (2016). Electrochemical investigation of MOFs as intercalation materials for Na-ion batteries [Conference Poster]. https://www.osti.gov/biblio/1347163 Publication ID: 48825
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Anderson, T., Small, L., Pratt, H., Fujimoto, C., & Fujimoto, C. (2016). Advances in Materials for Ionic Liquid Flow Batteries [Conference Poster]. https://www.osti.gov/biblio/1364828 Publication ID: 49051
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Small, L., Pratt, H., Fujimoto, C., Anderson, T., & Anderson, T. (2016). MetILs: Energy Dense Metal Ionic Liquids [Conference Poster]. https://www.osti.gov/biblio/1364824 Publication ID: 49047
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Small, L., Pratt, H., Fujimoto, C., Anderson, T., & Anderson, T. (2016). Diels alder polyphenylene anion exchange membrane for nonaqueous redox flow batteries. Journal of the Electrochemical Society, 163(1), pp. A5106-A5111. https://doi.org/10.1149/2.0141601jes Publication ID: 45064
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Apblett, C., Stewart, D.M., Fryer, R.T., Sell, J.C., Pratt, H., Anderson, T., Meulenberg, R.W., & Meulenberg, R.W. (2015). In situ XANES and EXAFS Analysis of Redox Active Fe Center Ionic Liquids. Electrochimica Acta, 185, pp. 156-161. https://doi.org/10.1016/j.electacta.2015.09.093 Publication ID: 48129
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Rodriguez, M.A., Coker, E., Mowry, C., Pimentel, A., Anderson, T., Griego, J.J.M., & Griego, J.J.M. (2015). MONITORING OF COS2 REACTIONS USING HIGH TEMPERATURE XRD COUPLED WITH GAS CHROMATOGRAPHY (GC) [Conference Poster]. https://doi.org/10.1017/S0885715616000166 Publication ID: 45879
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Fenton, K., Nagasubramanian, G., Staiger, C.L., Pratt, H., Rempe, S., Leung, K., Chaudhari, M., Anderson, T., & Anderson, T. (2015). Organosilicon-Based Electrolytes for Long-Life Lithium Primary Batteries. https://doi.org/10.2172/1222982 Publication ID: 45741
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Anderson, T., Fujimoto, C., Pratt, H., Small, L., & Small, L. (2015). Adv. Materials for Ionic Liquid Flow Battery [Conference Poster]. https://www.osti.gov/biblio/1323039 Publication ID: 45380
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Zarkesh, R.A., Cappillino, P., Talin, A., Anstey, M., Anderson, T., & Anderson, T. (2015). In operando Flow Battery Monitoring for Safety and Reliability [Conference Poster]. https://www.osti.gov/biblio/1323038 Publication ID: 45379
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Anderson, T., Pratt, H., & Pratt, H. (2015). Ionic Liquid Flow Batteries [Conference Poster]. https://www.osti.gov/biblio/1256242 Publication ID: 43721
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Orendorff, C., Fenton, K., Nagasubramanian, G., Lamb, J., Anderson, T., & Anderson, T. (2015). Evaluation of Abuse Tolerance Improvements [Conference Poster]. https://www.osti.gov/biblio/1256275 Publication ID: 43784
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Anderson, T., Pratt, H., & Pratt, H. (2015). Ionic Liquid Flow Battery Materials and Prototyping [Conference Poster]. https://www.osti.gov/biblio/1257576 Publication ID: 43950
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Orendorff, C., Fenton, K., Nagasubramanian, G., Lamb, J., Anderson, T., & Anderson, T. (2015). Abuse Tolerance Improvements [Conference Poster]. https://www.osti.gov/biblio/1249173 Publication ID: 43140
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Hudak, N.S., Small, L., Pratt, H., Anderson, T., & Anderson, T. (2015). Through-plane conductivities of membranes for nonaqueous redox flow batteries. Journal of the Electrochemical Society, 162(10), pp. A2188-A2194. https://doi.org/10.1149/2.0901510jes Publication ID: 43590
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Anderson, T., Pratt, H., & Pratt, H. (2015). Ionic liquid flow battery materials and prototyping [Conference Poster]. NSTI: Advanced Materials – TechConnect Briefs 2015. https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84983375553&origin=inward Publication ID: 42687
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Pratt, H., Pratt, W.R., Fang, X., Hudak, N., Anderson, T., & Anderson, T. (2014). Mixed-metal, structural, and substitution effects of polyoxometalates on electrochemical behavior in a redox flow battery. Electrochimica Acta, 138, pp. 210-214. https://doi.org/10.1016/j.electacta.2014.06.110 Publication ID: 37577
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Anderson, T., Pratt, H., & Pratt, H. (2013). Polyoxometalate “Solutions” for Redox Flow Batteries [Conference]. https://www.osti.gov/biblio/1121376 Publication ID: 31749
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Pratt, H., Anderson, T., Hudak, N., Anstey, M., & Anstey, M. (2013). Metal Complexes With Redox-Active Ligands As High Energy Density Nonaqueous Redox Flow Battery Electrolytes [Conference]. https://www.osti.gov/biblio/1117137 Publication ID: 36485
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Pratt, H., Anderson, T., & Anderson, T. (2013). Mixed Addenda Polyoxometalate %22Solutions%22 for Stationary Energy Storage. Dalton Transactions, 42(44). https://doi.org/10.1039/c3dt51653a Publication ID: 35577
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Cappillino, P., Pratt, H., Hudak, N., Anderson, T., Anstey, M., & Anstey, M. (2013). Advanced Energy Materials Cover Art. Advanced Energy Materials. https://www.osti.gov/biblio/1109020 Publication ID: 35506
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Pratt, H., Leonard, J., Anderson, T., & Anderson, T. (2013). Copper Ionic Liquids: A New Approach to Stationary EnergyStorage Through Tunable Ion Pairing [Conference]. https://www.osti.gov/biblio/1109014 Publication ID: 35505
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Pratt, H., Hudak, N., Anderson, T., & Anderson, T. (2013). A polyoxometalate flow battery. Journal of Power Sources, 236(C), pp. 259-264. https://doi.org/10.1016/j.jpowsour.2013.02.056 Publication ID: 32055
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Anderson, T., Pratt, H., & Pratt, H. (2013). MetILs: Ionic Liquids for Redox Flow Batteries [Conference]. https://www.osti.gov/biblio/1107000 Publication ID: 34996
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Anderson, T., Pratt, H., Leonard, J., & Leonard, J. (2013). Redox Flow Batteries Discussions: UT/ORNL/SNL [Presentation]. https://www.osti.gov/biblio/1666212 Publication ID: 34777
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Anstey, M., Anderson, T., Pratt, H., & Pratt, H. (2013). Metal complexes with redox-active ligands as electrolytes for high-performance flow batteries [Conference]. https://www.osti.gov/biblio/1073148 Publication ID: 32897
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Pratt, H., Leonard, J., Steele, L., Staiger, C.L., Anderson, T., & Anderson, T. (2012). Copper Ionic Liquids: examining the role of the anion in determining physical and chemical properties. Proposed for publication in Inorganica Chimica Acta.. https://doi.org/10.1016/j.ica.2012.10.005 Publication ID: 30545
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Zavadil, K., Spoerke, E., Delnick, F., Anderson, T., Apblett, C., Cygan, R., Ihlefeld, J., & Ihlefeld, J. (2012). Sodium-based Battery Development A family of batteries for large scale storage [Conference]. https://www.osti.gov/biblio/1073435 Publication ID: 30141
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Anderson, T., Pratt, H., & Pratt, H. (2012). Advanced Materials for Flow Batteries [Conference]. https://www.osti.gov/biblio/1061052 Publication ID: 29915
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Anderson, T., Pratt, H., & Pratt, H. (2012). Tailorable Ionic Liquids for Broad Electrochemical Applications [Conference]. https://www.osti.gov/biblio/1073347 Publication ID: 29315
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Anderson, T., Hudak, N., & Hudak, N. (2012). Flow Battery R&D at Sandia [Conference]. https://www.osti.gov/biblio/1064273 Publication ID: 28766
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Brigman, C., Anderson, T., Pratt, H., & Pratt, H. (2012). Dalton Transactions Polyoxometalate Cover Art. Proposed for publication in Dalton Transactions.. https://www.osti.gov/biblio/1067733 Publication ID: 27885
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Zavadil, K., Apblett, C., Delnick, F., Spoerke, E., Cygan, R., Anderson, T., & Anderson, T. (2012). Sodium-based Battery Development Programmatic Overview [Conference]. https://www.osti.gov/biblio/1078455 Publication ID: 27640
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Pratt, H., Anderson, T., & Anderson, T. (2012). A co-crystal of polyoxometalates exhbiting single-molecule magnet behavior: the structural origin of a large magnetic anisotropy. Dalton Transactions. https://www.osti.gov/biblio/1145314 Publication ID: 26853
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Staiger, C.L., Pratt, H., Leonard, J., Ingersoll, D., Anderson, T., & Anderson, T. (2011). MetILs: A FAMILY OF METAL IONIC LIQUIDS FOR REDOX FLOW BATTERIES [Conference]. https://www.osti.gov/biblio/1111736 Publication ID: 25129
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Pratt, H., Ingersoll, D., Alam, T.M., Anderson, T., & Anderson, T. (2011). Synthesis and Characterization of Polyoxometalates For Energy Storage Applications [Conference]. https://www.osti.gov/biblio/1106514 Publication ID: 24139
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Greathouse, J.A., Anderson, T., & Anderson, T. (2011). Trends in Binding Phenomena of CW Simulants to Selected Materials [Conference]. https://www.osti.gov/biblio/1120279 Publication ID: 23287
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Anderson, T., Ingersoll, D., Hensley, A., Staiger, C.L., Leonard, J., & Leonard, J. (2010). Synthesis of an ionic liquid with an iron coordination cation. Dalton Transactions, 39(37). https://doi.org/10.1039/c0dt00523a Publication ID: 19139
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Greathouse, J.A., Anderson, T., & Anderson, T. (2010). Trends in binding phenomena of CW simulants to selected materials CBS.SIM.03.10.SN.003 [Conference]. https://www.osti.gov/biblio/1020458 Publication ID: 18582
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Anderson, T., Ingersoll, D., Staiger, C.L., Waldrip, K., & Waldrip, K. (2009). Electroactive Ionic Liquids: A New Approach To Flow Batteries [Conference]. https://www.osti.gov/biblio/1142010 Publication ID: 16984
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Anderson, T. (2008). Direct observation of contact ion-pairing in aqueous solution. Proposed for publication in Nature Chemistry.. https://www.osti.gov/biblio/951533 Publication ID: 15086
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Anderson, T., Provencio, P., & Provencio, P. (2008). A Comparison of Aqueous and Non-aqueous Soft-Chemical Syntheses of Lithium Niobate and Lithium Tantalate Powders. Journal of Materials Chemistry. https://www.osti.gov/biblio/1142897 Publication ID: 14404
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Anderson, T. (2008). Reaction Dynamics of the Decaniobate ([HxNb10O28](6-x)-) Ion in Water. Angewandte Chemie. https://www.osti.gov/biblio/1145602 Publication ID: 13398
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Anderson, T., Rodriguez, M.A., & Rodriguez, M.A. (2008). Controlled Assembly of [Nb6-xWxO19](8-x)- (x %3D 0 – 4) Lindqvist Ions with Copper-Amine Complexes. European Journal of Inorganic Chemistry. https://www.osti.gov/biblio/1145700 Publication ID: 13397
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Anderson, T., Alam, T.M., Rodriguez, M.A., & Rodriguez, M.A. (2007). An aqueous route to [Ta6O19]8- and solid-state studies of isostructural niobium and tantalum oxide complexes. https://doi.org/10.2172/1139977 Publication ID: 11720
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Anderson, T., Alam, T.M., Rodriguez, M.A., Nyman, M., & Nyman, M. (2007). An Aqueous Route to [Ta6O19]8- and Solid-State Studies of Isostructural Niobium and Tantalum Oxide Complexes. Dalton Transactions, (40). https://doi.org/10.1039/b707636c Publication ID: 10091
Patents & Trademarks
D.F. Sava Gallis, H.D. Pratt III, T.M. Anderson, N.S. Hudak Metal-Organic Framework Electrodes for Sodium Ion Batteries U. S. Patent 10,497,971, Issued December 3, 2019.
T.M. Anderson, H.D. Pratt III, HD.F. Sava Gallis, N.S. Hudak Electrodes for Sodium Ion Batteries U. S. Patent 10,320,028, Issued June 11, 2019.
L.J. Small, T.M. Anderson, H.D. Pratt III Nonaqueous Redox Flow Battery Electrolyte Comprising an Ionic Liquid with a Metal Cation Coordinated to Redox-Active Ligands U. S. Patent 10,305,133, Issued May 28, 2019.
C.H. Fujimoto, H.D. Pratt III, T.M. Anderson High Performance, Durable Polymers Including Poly(phenylene) U. S. Patent 9,580,541, Issued February 28, 2017
T.M. Anderson, N.S. Hudak, C.L. Staiger, H.D. Pratt III Polyoxometalate Active Charge-Transfer Material for Mediated Redox Flow Battery U.S. Patent 9,548,509, Issued January 17, 2017.
T.M. Anderson, H.D. Pratt III Polyoxometalate Flow Battery U.S. Patent 9,287,578, Issued March 15, 2016.
T.M. Anderson, D. Ingersoll, C.L. Staiger, H.D. Pratt III Synthesis of Electroactive Ionic Liquids for Flow Battery Applications U.S. Patent 9,123,943, Issued September 1, 2015.
S.G. Thoma, T.M. Anderson Method of Synthesizing Tungsten Nanoparticles U.S. Patent 8,372,177, Issue Date February 12, 2013.