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Lithium Nucleation of Anode-Free Solid-State Batteries with a Dry Compressible InterlayerAnode-free lithium batteries offer promising advantages, including increased energy density and the ability to address common mechanistic failures within the cell, thus increasing safety. One way that can make this possible is to control lithium nucleation. This could be achieved by reducing the overpotential required and implanting lithophilic nucleation sites in an anodic interlayer to aid in lithium ion transport and plating. The concept has been utilized in solid-state battery systems where electrolytes are solids with further improved safety and structural longevity. In this presentation, we discuss the use of a silver-holey graphene-based anodic interlayer that can be fabricated via direct dry compression without the use of solvent or binder. The addition of silver to the holey graphene matrix creates a route to lithium plating via a lower-energy intermediate. This idea is supported by the presence of a lithium-silver alloy that forms during the activation step. It is understood that the embedded silver acts as a nucleation site for lithium ions, thereby assisting in even plating. This control, combined with the added cushion of the holey graphene itself, can help reduce dendrite formation, ultimately increasing the safety and lifetime of the solid-state batteries.
Document ID
20260004992
Acquisition Source
Langley Research Center
Document Type
Poster
Authors
J Chelsea Stephens
(NASA Intern Hampton, Virginia, United States)
Ji Su
(Langley Research Center Hampton, United States)
Yi Lin
(Analytical Mechanics Associates (United States) Hampton, United States)
Date Acquired
June 2, 2026
Subject Category
Chemistry And Materials (General)
Meeting Information
Meeting: 23rd International Meeting on Lithium Batteries
Location: Montreal
Country: CA
Start Date: June 14, 2026
End Date: June 19, 2026
Sponsors: International Meeting on Lithium Batteries
Funding Number(s)
WBS: 533127.02.22.07.04
WBS: 109492.02.07.06.02.12
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
NASA Technical Management
Keywords
Solid state batteries
Energy storage materials
electrochemistry
lithium metal anode
anode free batteries
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