Quantifying the promise of 'beyond' Li-ion batteries

被引:41
|
作者
Sapunkov, Oleg [1 ]
Pande, Vikram [1 ]
Khetan, Abhishek [2 ]
Choomwattana, Chayanit [1 ]
Viswanathan, Venkatasubramanian [1 ]
机构
[1] Carnegie Mellon Univ, Dept Mech Engn, Pittsburgh, PA 15213 USA
[2] Rhein Westfal TH Aachen, Inst Combust Technol, D-52056 Aachen, Germany
来源
TRANSLATIONAL MATERIALS RESEARCH | 2015年 / 2卷 / 04期
关键词
batteries; energy storage; hype chart;
D O I
10.1088/2053-1613/2/4/045002
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
There is a growing consensus that future specific energy improvements in Li-ion batteries may not ever be sufficient to allow mass market adoption of electric vehicles, as we approach the physical limits of storage capacity of current Li-ion batteries. Several 'beyond li-ion' (BLI) chemistries are being explored as possible high-energy-density alternatives to Li-ion batteries. In this article, we focus on analyzing three BLI battery systems: Li-air, Li-sulphur and Na-air. We present a comprehensive discussion of the fundamental material challenges associated with these chemistries and document the progress being made in translating next-generation battery systems from the lab to the market. We also carry out a critical examination of the hype surrounding emerging battery technologies. We report, for the first time, a hype chart for batteries akin to those popularized by Gartner, Inc. for emerging technologies. We expect this hype chart to give us better insights on the respective standings of the current BLI technologies.
引用
收藏
页数:21
相关论文
共 50 条
  • [21] Progress and Status of Hydrometallurgical and Direct Recycling of Li-Ion Batteries and Beyond
    Larouche, Francois
    Tedjar, Farouk
    Amouzegar, Kamyab
    Houlachi, Georges
    Bouchard, Patrick
    Demopoulos, George P.
    Zaghib, Karim
    MATERIALS, 2020, 13 (03)
  • [22] Lithium/Air batteries: Next generation of rechargeable batteries beyond Li-ion chemistry?
    Au, Ming
    Fox, Elise
    Colon-Mercado, Hector
    Adams, Thad
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2011, 242
  • [23] Applications of Conventional Vibrational Spectroscopic Methods for Batteries Beyond Li-Ion
    Deng, Yuanfu
    Dong, Shengyang
    Li, Zhifei
    Jiang, Heng
    Zhang, Xiaogang
    Ji, Xiulei
    SMALL METHODS, 2018, 2 (08):
  • [24] Electrolyte Solutions for "Beyond Li-Ion Batteries": Li-S, Li-O2, and Mg Batteries
    Sharon, Daniel
    Salama, Michael
    Attias, Ran
    Aurbach, Doron
    ELECTROCHEMICAL SOCIETY INTERFACE, 2019, 28 (02): : 71 - 77
  • [25] Beyond Li-ion: electrode materials for sodium- and magnesium-ion batteries
    Robert C. Massé
    Evan Uchaker
    Guozhong Cao
    Science China Materials, 2015, 58 : 715 - 766
  • [26] Beyond Li-ion: electrode materials for sodium- and magnesium-ion batteries
    Masse, Robert C.
    Uchaker, Evan
    Cao, Guozhong
    SCIENCE CHINA-MATERIALS, 2015, 58 (09) : 715 - 766
  • [27] Li-Ion Batteries and Li-Ion Ultracapacitors: Characteristics, Modeling and Grid Applications
    Hamidi, Seyed Ahmad
    Manla, Emad
    Nasiri, Adel
    2015 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2015, : 4973 - 4979
  • [28] First principles study of layered scandium disulfide for use as Li-ion and beyond-Li-ion batteries
    Price, Conor Jason
    Pitfield, Joe
    Baker, Edward Allery David
    Hepplestone, Steven Paul
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2023, 25 (03) : 2167 - 2178
  • [29] In silico screening and rank-order of electrolytes for Li-ion batteries and beyond
    Kamath, Ganesh
    Xiong, Hui
    Sankaranarayanan, Subramanian
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2016, 251
  • [30] Sustainable Recycling Technology for Li-Ion Batteries and Beyond: Challenges and Future Prospects
    Fan, Ersha
    Li, Li
    Wang, Zhenpo
    Lin, Jiao
    Huang, Yongxin
    Yao, Ying
    Chen, Renjie
    Wu, Feng
    CHEMICAL REVIEWS, 2020, 120 (14) : 7020 - 7063