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Solid-State Post Li Metal Ion Batteries: A Sustainable Forthcoming Reality?

机译:固态后李金属离子电池:可持续的即将到来的现实?

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摘要

In the quest for a sustainable society, energy storage technology is destined to play a central role in the future energy landscape. Breakthroughs in materials and methods involving sustainable resources are crucial to protect humankind from the most serious consequences of climate change. Rechargeable batteries of all forms will be required to follow the path. Elements that are eligible to harmonically contribute to the development of a sustainable ecosystem and fulfil the demands of high energy density batteries include Na, K, Ca, Mg, Zn, and Al. Numerous research efforts are underway to explore new battery chemistries based on these elements and, depending on the field of application, different elements inherit different advantages and challenges. Full sustainability implies that the environmental friendliness of these systems must be characterized by a "cradle-to-grave" approach. In this context, the pursuit of global environmental and economical sustainability from mass production, raw materials, and technical challenges is discussed herein for the most recent battery concepts based on monovalent and multivalent metal anodes. A perspective on strategies and opportunities particularly around the development of all-solid-state system configurations is provided, and the most important obstacles to overcome in search of a more sustainable future for electrochemical energy storage are addressed.
机译:在寻求可持续发展的社会中,能源存储技术注定要在未来的能量景观中发挥着核心作用。涉及可持续资源的材料和方法的突破对于保护人类免受气候变化的最严重后果至关重要。所有表格的可充电电池将被要求遵循路径。有资格谐析可持续生态系统的开发和满足高能量密度电池需求的要素包括Na,K,Ca,Mg,Zn和Al。正在进行众多的研究工作来探索基于这些元素的新电池化学品,并且根据应用领域,不同的元素继承了不同的优缺点和挑战。完全可持续性意味着这些系统的环境友好必须以“摇篮到坟墓”方法为特征。在这种情况下,本文讨论了基于一价和多价金属阳极的最新电池概念的批量生产,原材料和技术挑战的全球环境和经济可持续性。提供了策略和机遇特别围绕全固态系统配置的发展,以及寻找用于电化学能量存储更可持续的未来的最重要的障碍。

著录项

  • 来源
    《Advanced energy materials》 |2021年第43期|2100785.1-2100785.30|共30页
  • 作者单位

    Univ Chieti Pescara G dAnnunzio Dept Pharm Via Vestini 31 I-66100 Chieti Italy|Natl Reference Ctr Electrochem Energy Storage GIS Via G Giusti 9 I-50121 Florence Italy;

    Natl Reference Ctr Electrochem Energy Storage GIS Via G Giusti 9 I-50121 Florence Italy|Politecn Torino Dept Appl Sci & Technol DISAT GAME Lab Cso Duca Abruzzi 24 I-10129 Turin Italy;

    Natl Reference Ctr Electrochem Energy Storage GIS Via G Giusti 9 I-50121 Florence Italy|Univ Napoli Federico II Dept Phys Ettore Pancini Via Cintia 21 I-80126 Naples Italy;

    Natl Reference Ctr Electrochem Energy Storage GIS Via G Giusti 9 I-50121 Florence Italy|Univ Torino Dept Chem Via Pietro Giuria 7 I-10125 Turin Italy|Univ Torino NIS Interdept Ctr Via G Quarello 15A I-10135 Turin Italy|Univ Torino INSTM Reference Ctr Via G Quarello 15A I-10135 Turin Italy;

    Natl Reference Ctr Electrochem Energy Storage GIS Via G Giusti 9 I-50121 Florence Italy|Univ Roma La Sapienza Dept Chem Piazzale Aldo Moro 5 I-00185 Rome Italy;

    Natl Reference Ctr Electrochem Energy Storage GIS Via G Giusti 9 I-50121 Florence Italy|Univ Napoli Federico II Dept Chem Sci Via Cintia 21 I-80126 Naples Italy;

    Natl Reference Ctr Electrochem Energy Storage GIS Via G Giusti 9 I-50121 Florence Italy|Politecn Torino Dept Appl Sci & Technol DISAT GAME Lab Cso Duca Abruzzi 24 I-10129 Turin Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electrochemical energy storage; metal anodes; post-lithium batteries; solid electrolytes; sustainability;

    机译:电化学储能;金属阳极;后锂电池;固体电解质;可持续性;

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