M
Mark E. Bowden
Researcher at Pacific Northwest National Laboratory
Publications - 314
Citations - 10075
Mark E. Bowden is an academic researcher from Pacific Northwest National Laboratory. The author has contributed to research in topics: Thin film & Chemistry. The author has an hindex of 49, co-authored 280 publications receiving 7694 citations. Previous affiliations of Mark E. Bowden include Los Alamos National Laboratory & MacDiarmid Institute for Advanced Materials and Nanotechnology.
Papers
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Journal ArticleDOI
Anode-Free Rechargeable Lithium Metal Batteries
Jiangfeng Qian,Brian D. Adams,Jianming Zheng,Wu Xu,Wesley A. Henderson,Jun Wang,Mark E. Bowden,Suochang Xu,Jianzhi Hu,Ji-Guang Zhang +9 more
TL;DR: In this article, an anode-free rechargeable lithium battery based on a Cu||LiFePO4 cell structure with an extremely high Coulombic efficiency (>99.8%) is reported.
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Performance enhancement and degradation mechanism identification of a single-atom Co–N–C catalyst for proton exchange membrane fuel cells
Xiaohong Xie,Cheng He,Boyang Li,Yanghua He,David A. Cullen,Evan C. Wegener,A. Jeremy Kropf,Ulises Martinez,Yingwen Cheng,Mark H. Engelhard,Mark E. Bowden,Miao Song,Teresa Lemmon,Xiaohong S. Li,Zimin Nie,Jian Liu,Deborah J. Myers,Piotr Zelenay,Guofeng Wang,Gang Wu,Vijay Ramani,Yuyan Shao +21 more
TL;DR: In this paper, an atomically dispersed Co and N co-doped carbon (CoN4C12) catalyst with porphyrin-like sites is reported with an improved activity and durability in PEM fuel cell conditions.
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High- T c superconducting phases in the series Bi 2.1 (Ca, Sr) n+l Cu n O 2n+4+δ
Jeffery L. Tallon,R. G. Buckley,P.W. Gilberd,M.R. Presland,I. W. M. Brown,Mark E. Bowden,L. A. Christian,R. Goguel +7 more
TL;DR: In this paper, three distinct phases in the homologous series Bi2.1 were identified and indexed on a pseudo-tetragonal subcell with a = b = 5.4 A and c = 24.6 A. The critical temperature for these phases is sharply dependent on the Sr/Ca ratio and oxygen stoichiometry, as determined by heat treatment.
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Outstanding Problems in the Kaolinite-Mullite Reaction Sequence Investigated by 29Si and 27Al Solid-state Nuclear Magnetic Resonance: I, Metakaolinite
TL;DR: In this article, a new model for metakaolinite is proposed, consisting of anhydrous regions of distorted AI-0 tetrahedra containing randomly distributed isolated residual hydroxyls associated with A1-0 configurations of regular octahedral and tetrahedral symmetry.
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Enabling room temperature sodium metal batteries
Ruiguo Cao,Kuber Mishra,Kuber Mishra,Xiaolin Li,Jiangfeng Qian,Mark H. Engelhard,Mark E. Bowden,Kee Sung Han,Karl T. Mueller,Wesley A. Henderson,Ji Guang Zhang +10 more
TL;DR: In this article, it is demonstrated that solid Na metal can be electrochemically plated/stripped at ambient temperature with high efficiency (>99%) on both copper and inexpensive aluminum current collectors.