Quantitative analysis of sodium metal deposition and interphase in Na metal batteries

Author:

Sayahpour Baharak1ORCID,Li Weikang2ORCID,Bai Shuang1,Lu Bingyu2,Han Bing2,Chen Yu-Ting1ORCID,Deysher Grayson1,Parab Saurabh1,Ridley Phillip2ORCID,Raghavendran Ganesh2,Nguyen Long Hoang Bao2ORCID,Zhang Minghao2,Meng Ying Shirley23ORCID

Affiliation:

1. Materials Science and Engineering Program, University of California San Diego, CA 92093, USA

2. Department of NanoEngineering, University of California San Diego, CA 92093, USA

3. Pritzker School of Molecular Engineering, University of Chicago, Chicago, IL 60637, USA

Abstract

Sodium-ion batteries exhibit significant promise as a viable alternative to current lithium-ion technologies owing to their sustainability, low cost per energy density, reliability, and safety.

Funder

Materials Research Science and Engineering Center, University of California, San Diego

National Science Foundation

Publisher

Royal Society of Chemistry (RSC)

Subject

Pollution,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment,Environmental Chemistry

Reference72 articles.

1. U.S. Department of Energy, Energy Storage Grand Challenge Energy Storage Market Report, 2020. U.S. Dep. Energy 2020, Technical (December), 65

2. Resource constraints on the battery energy storage potential for grid and transportation applications

3. Na-ion versus Li-ion Batteries: Complementarity Rather than Competitiveness

4. From Lithium-Ion to Sodium-Ion Batteries: Advantages, Challenges, and Surprises

5. B.Sayahpour , Advanced Characterization Methods for Reaction Mechanism Investigation in Next Generation Energy Storage Systems , University of California , San Diego , 2023

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