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1.
Fundamental Spectroscopic Studies of Lithium Sulfur Battery Reaction Mechanisms
by Wujcik, Kevin Hamilton, Ph.D.  University of California, Berkeley. 2016: 119 pages; 10195067.
2.
Room Temperature Sulfur Battery Cathode Design and Processing Techniques
by Carter, Rachel, Ph.D.  Vanderbilt University. 2017: 176 pages; 10753374.
3.
A Multimodal Approach to Materials Design for Next Generation Energy Storage Systems
by Abraham, Alyson, Ph.D.  State University of New York at Stony Brook. 2020: 175 pages; 27964301.
4.
Fundamental Studies of Lithium-sulfur Reaction Intermediates
by Wang, Dunyang, Ph.D.  University of California, Berkeley. 2018: 93 pages; 10930612.
5.
Lithium dendrite growth through solid polymer electrolyte membranes
by Harry, Katherine Joann, Ph.D.  University of California, Berkeley. 2016: 125 pages; 10150902.
6.
Electrochemical Pathways for Sustainable Energy Storage and Energy Conversion
by Jayathilake, Buddhinie Srimali, Ph.D.  University of Southern California. 2019: 274 pages; 13807471.
7.
Corrosion of aluminum current collector in cost effective rechargeable lithium-ion batteries
by Li, Shengyi, Ph.D.  The University of Wisconsin - Milwaukee. 2016: 178 pages; 10250372.
8.
Theoretical analysis of stress generation and volume change in lithium ion and lithium thermal batteries
by Renganathan, Sindhuja, Ph.D.  University of South Carolina. 2010: 198 pages; 3402858.
10.
In situ XAS of Molybdenum Dichalcogenides as Li-Ion Battery Anodes
by Beaver, Nathaniel Morck, M.S.  Illinois Institute of Technology. 2017: 54 pages; 10680750.
11.
Model-Based Condition Monitoring and Power Management for Rechargeable Electrochemical Batteries
by Kim, Taesic, Ph.D.  The University of Nebraska - Lincoln. 2015: 213 pages; 3700290.
12.
New Materials for Lithium-Ion Batteries
by Fl├ąten Andersen, Hanne, Ph.D.  Bayerische Julius-Maximilians-Universitaet Wuerzburg (Germany). 2014: 168 pages; 27766711.
13.
16.
Influence of discharge product formation on lithium-oxygen battery performance
by Lau, Sampson, Ph.D.  Cornell University. 2016: 165 pages; 10183832.
17.
Development of a Green Soft Chemical Method for the Synthesis of Cathode Materials Utilized in Lithium-ion Energy Storage Technologies
by Wicker, Scott Ambrose, Ph.D.  Southern University and Agricultural and Mechanical College. 2011: 167 pages; 3487688.
18.
Continuum-Scale Lithium-Ion Battery Cell Model in FEniCS
by Macklen, Christopher, M.Eng.  University of Colorado Colorado Springs. 2019: 180 pages; 27668548.
19.
Lithium-Ion Battery SOC Estimation Using Deep Learning Neural Networks
by Wang, Rui, M.S.  Rutgers The State University of New Jersey, School of Graduate Studies. 2019: 55 pages; 22624788.
21.
Sp3 boron single ion electrolytes for lithium ion battery application
by Guodong, Xu, Ph.D.  National University of Singapore (Singapore). 2015: 138 pages; 10006109.
22.
Sustainable Manufacturing of Carbon Nanomaterials for Energy Storage Applications
by Douglas, Anna, Ph.D.  Vanderbilt University. 2019: 152 pages; 13811088.
26.
Validation and insight into a novel packed-bed electrode flow battery architecture
by Sawyer, Bryan Dustin, Ph.D.  University of Missouri - Columbia. 2010: 115 pages; 3488938.
27.
Using ion current to probe nanostructured battery materials in different oxidation states
by Mann, William, M.S.  California State University, Long Beach. 2016: 44 pages; 10155543.
28.
Advanced Electrolytes for Lithium Batteries with High Safety and Performance
by Liu, Boyang, Ph.D.  University of Maryland, College Park. 2018: 137 pages; 10982487.
29.
Nano-engineering of densely packed electrochemical energy storage architectures by atomic layer deposition
by Liu, Chanyuan, Ph.D.  University of Maryland, College Park. 2016: 113 pages; 10161058.
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