Will the competitive future of solid state Li metal batteries rely on a ceramic or a composite electrolyte?

Author:

Gutiérrez-Pardo Antonio123,Pitillas Martinez Andrea I.123,Otaegui Laida123,Schneider Meike456,Roters Andreas456,Llordés Anna12378ORCID,Aguesse Frédéric123ORCID,Buannic Lucienne123ORCID

Affiliation:

1. CIC Energigune

2. Parque Tecnológico de Álava

3. Spain

4. Schott AG

5. 55122 Mainz

6. Germany

7. IKERBASQUE

8. The Basque Foundation for Science

Abstract

The industrial development of Li metal solid state batteries will be boosted not only by providing highly Li+ conductive electrolyte materials, but also by demonstrating their technical viability in the actual device.

Funder

Ekonomiaren Garapen eta Lehiakortasun Saila, Eusko Jaurlaritza

Ikerbasque, Basque Foundation for Science

Bundesministerium für Bildung und Forschung

Publisher

Royal Society of Chemistry (RSC)

Subject

Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference32 articles.

1. Historical development of secondary lithium batteries

2. Challenges and prospects of the role of solid electrolytes in the revitalization of lithium metal batteries

3. A solid future for battery development

4. E. Bekaert , L.Buannic , U.Lassi , A.Llordés and J.Salminen , Chapter One - Electrolytes for Li- and Na-Ion Batteries: Concepts, Candidates, and the Role of Nanotechnology A2 , In Emerging Nanotechnologies in Rechargeable Energy Storage Systems , ed. L. M. Rodriguez-Martinez and N. Omar , Elsevier , Boston , 2017 , pp. 1–43

5. Atmosphere Controlled Processing of Ga-Substituted Garnets for High Li-Ion Conductivity Ceramics

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