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Travis P Pollard

Showing results (11-20 of 24) with videos related to

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Energy & Environmental Science|June 20, 2024
Robust battery interphases from dilute fluorinated cationsChulgi Nathan Hong, Mengwen Yan, Oleg Borodin, et al.
Nature|February 9, 2023
Electrolyte design for Li-ion batteries under extreme operating conditionsJijian Xu, Jiaxun Zhang, Travis P Pollard, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 8, 2022
Highly reversible Zn metal anode enabled by sustainable hydroxyl chemistryLin Ma, Jenel Vatamanu, Nathan T Hahn, et al.
Nature Nanotechnology|April 8, 2025
Li<sup>+</sup>(ionophore) nanoclusters engineered aqueous/non-aqueous biphasic electrolyte solutions for high-potential lithium-based batteriesXiyue Zhang, Travis P Pollard, Sha Tan, et al.
Nature|June 6, 2019
Author Correction: Aqueous Li-ion battery enabled by halogen conversion-intercalation chemistry in graphiteChongyin Yang, Ji Chen, Xiao Ji, et al.
Nature Chemistry|December 19, 2025
Electrolyte reduction on cathodes to enhance the performance of high-energy batteriesXiyue Zhang, Panxing Bai, Travis P Pollard, et al.
Nano Letters|September 7, 2022
Localized Hydrophobicity in Aqueous Zinc Electrolytes Improves Zinc Metal ReversibilityPeichao Zou, Ruoqian Lin, Travis P Pollard, et al.
Nature|May 10, 2019
Aqueous Li-ion battery enabled by halogen conversion-intercalation chemistry in graphiteChongyin Yang, Ji Chen, Xiao Ji, et al.
Nature Communications|February 8, 2024
High voltage electrolytes for lithium-ion batteries with micro-sized silicon anodesAi-Min Li, Zeyi Wang, Travis P Pollard, et al.
Angewandte Chemie (International Ed. in English)|October 2, 2019
A Pyrazine-Based Polymer for Fast-Charge BatteriesMinglei Mao, Chao Luo, Travis P Pollard, et al.
Pageof 3

Showing results (11-20 of 24) with videos related to

Sort By:
Pageof 3
Energy & Environmental Science|June 20, 2024
Robust battery interphases from dilute fluorinated cationsChulgi Nathan Hong, Mengwen Yan, Oleg Borodin, et al.
Nature|February 9, 2023
Electrolyte design for Li-ion batteries under extreme operating conditionsJijian Xu, Jiaxun Zhang, Travis P Pollard, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 8, 2022
Highly reversible Zn metal anode enabled by sustainable hydroxyl chemistryLin Ma, Jenel Vatamanu, Nathan T Hahn, et al.
Nature Nanotechnology|April 8, 2025
Li<sup>+</sup>(ionophore) nanoclusters engineered aqueous/non-aqueous biphasic electrolyte solutions for high-potential lithium-based batteriesXiyue Zhang, Travis P Pollard, Sha Tan, et al.
Nature|June 6, 2019
Author Correction: Aqueous Li-ion battery enabled by halogen conversion-intercalation chemistry in graphiteChongyin Yang, Ji Chen, Xiao Ji, et al.
Nature Chemistry|December 19, 2025
Electrolyte reduction on cathodes to enhance the performance of high-energy batteriesXiyue Zhang, Panxing Bai, Travis P Pollard, et al.
Nano Letters|September 7, 2022
Localized Hydrophobicity in Aqueous Zinc Electrolytes Improves Zinc Metal ReversibilityPeichao Zou, Ruoqian Lin, Travis P Pollard, et al.
Nature|May 10, 2019
Aqueous Li-ion battery enabled by halogen conversion-intercalation chemistry in graphiteChongyin Yang, Ji Chen, Xiao Ji, et al.
Nature Communications|February 8, 2024
High voltage electrolytes for lithium-ion batteries with micro-sized silicon anodesAi-Min Li, Zeyi Wang, Travis P Pollard, et al.
Angewandte Chemie (International Ed. in English)|October 2, 2019
A Pyrazine-Based Polymer for Fast-Charge BatteriesMinglei Mao, Chao Luo, Travis P Pollard, et al.
Pageof 3