November 2025

Journal

Water-In-Glass: A Self-Supporting Inorganic Aqueous Electrolyte

By:
Haque, Sinorul; Mandal, Indrajeet; Kumar, Jayanthi ; Pal, Prabir; Sen, Prince; Laxmi pradhan, Bijay; K dey, Krishna; Ghosh, Manasi; Nand gosvami, Nitya; M anoop krishnan, N; Wasim raja, Mir; R allu, Amarnath
Journal Name:
The Journal of Physical Chemistry B
Page Number:
9240-9248
Volume:
129
Issue Number:
36
Publication Date:
November 11, 2025
View DOI Listing:
https://doi.org/10.1021/acs.jpcb.5c04789

Abstract

Aqueous rechargeable sodium-ion batteries (ARNIBs) are emerging as cost-effective and safe candidates for large-scale energy storage applications. However, their advancement has been constrained by the narrow electrochemical stability window (ESW) of conventional aqueous electrolytes (1.23 V). Here, we present a transformative approach using an inexpensive and rapidly dissolvable inorganic glass material, water glass (W-glass), to significantly enhance the ESW and enable the development of solid-state, self-supporting aqueous film (SSA film) electrolytes. These SSA film electrolytes exhibit an extended ESW of up to 3.5 V and a conductivity of ∼10–4 S/cm at room temperature. Structural analysis using magic-angle spinning nuclear magnetic resonance (NMR) and solution-state NMR reveals that the dissolution of W-glass in water is driven by the interdependent hydrolysis of P–O–P linkages and Na+–H+ ion exchange. This work offers a cost-effective and scalable solution for advancing high-performance ARNIB technology, addressing critical barriers to commercial adoption.


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