Dennis W. McOwen, Ph.D.

Affiliations: 
2014 Chemical Engineering North Carolina State University, Raleigh, NC 
Area:
Chemical Engineering, Energy
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"Dennis McOwen"

Parents

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Wesley Henderson grad student 2009-2014 NCSU
 (Developing New Electrolytes for Advanced Li-ion Batteries.)
Eric Wachsman post-doc 2014- University of Maryland (Physics Tree)
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Publications

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Xie H, Yang C, Ren Y, et al. (2021) Amorphous-Carbon-Coated 3D Solid Electrolyte for an Electro-Chemomechanically Stable Lithium Metal Anode in Solid-State Batteries. Nano Letters
Fu Z, Zhang L, Gritton E, et al. (2020) Probing Mechanical Properties of Doped LiLaZrO Garnet Thin Electrolyte for Solid-State Batteries. Acs Applied Materials & Interfaces
Wang C, Fu K, Kammampata SP, et al. (2020) Garnet-Type Solid-State Electrolytes: Materials, Interfaces, and Batteries. Chemical Reviews
Fu Z, McOwen D, Zhang L, et al. (2020) Predicting the flexural strength of Li‐ion‐conducting garnet type oxide for solid‐state‐batteries Journal of the American Ceramic Society. 103: 5186-5195
Hamann T, Zhang L, Gong Y, et al. (2020) The Effects of Constriction Factor and Geometric Tortuosity on Li‐Ion Transport in Porous Solid‐State Li‐Ion Electrolytes Advanced Functional Materials. 30: 1910362
Hitz GT, McOwen DW, Zhang L, et al. (2019) High-rate lithium cycling in a scalable trilayer Li-garnet-electrolyte architecture Materials Today. 22: 50-57
Xu S, McOwen DW, Wang C, et al. (2018) Three-Dimensional, Solid-State Mixed Electron-Ion Conductive Framework for Lithium Metal Anode. Nano Letters
Yang C, Zhang L, Liu B, et al. (2018) Continuous plating/stripping behavior of solid-state lithium metal anode in a 3D ion-conductive framework. Proceedings of the National Academy of Sciences of the United States of America
McOwen DW, Xu S, Gong Y, et al. (2018) 3D-Printing Electrolytes for Solid-State Batteries. Advanced Materials (Deerfield Beach, Fla.). e1707132
Hays T, Hussain AM, Huang Y, et al. (2018) Improved Sulfur Tolerance of SOFCs through Surface Modification of Anodes Acs Applied Energy Materials. 1: 1559-1566
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