Water‐Soluble Inorganic Binders for Lithium‐Ion and Sodium‐Ion Batteries

Author:

Trivedi Shivam1ORCID,Pamidi Venkat1,Bautista Sebastian Pinto12,Shamsudin Farra Nur Aliah2,Weil Marcel12,Barpanda Prabeer134,Bresser Dominic15,Fichtner Maximilian13

Affiliation:

1. Helmholtz Institute Ulm (HIU) 89081 Ulm Germany

2. Institute for Technology Assessment and Systems Analysis (ITAS) Karlsruhe Institute of Technology 76021 Karlsruhe Germany

3. Institute of Nanotechnology (INT) Karlsruhe Institute of Technology (KIT) 76021 Karlsruhe Germany

4. Faraday Materials Laboratory (FaMaL) Materials Research Centre Indian Institute of Science (IISc) Bangalore 560012 India

5. Karlsruhe Institute of Technology 76021 Karlsruhe Germany

Abstract

AbstractInorganic materials form an emerging class of water‐soluble binders for battery applications. Their favourable physicochemical properties, such as intrinsic ionic conductivity, high thermal stability (>1000 °C), and compatibility to coat a diverse range of electrode materials make them useful binders for lithium‐ion and sodium‐ion batteries. Li and Na containing phosphates and silicates are attractive choices as multifunctional inorganic aqueous binders (IABs). This review discusses these binders' structural, thermal, and ionic properties, followed by exploiting their ionically conducting nature for all‐solid‐state batteries. Subsequently, the application of these compounds as binders and surface coating agents for different anodes and cathodes in lithium‐ion and sodium‐ion batteries is discussed. Eventually, a first evaluation of their environmental impacts and economic aspects is presented as well.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

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