Pre-lithiation of Silicon Anodes by Thermal Evaporation of Lithium for Boosting the Energy Density of Lithium Ion Cells

Adhitama, Egy; Dias Brandao, Frederico; Dienwiebel, Iris; Bela, Marlena Maria; Javed, Atif; Haneke, Lukas; Stan, Marian Cristian; Winter, Martin; Gomez-Martin, Aurora; Placke, Tobias

Research article (journal) | Peer reviewed

Abstract

Silicon (Si) is one of the most promising anode candidates to further push the energy density of lithium ion batteries. However, its practical usage is still hindered by parasitic side reactions including electrolyte decomposition and continuous breakage and (re-)formation of the solid electrolyte interphase (SEI), leading to consumption of active lithium. Pre-lithiation is considered a highly appealing technique to compensate for active lithium losses. A critical parameter for a successful pre-lithiation strategy by means of Li metal is to achieve lithiation of the active material/composite anode at the most uniform lateral and in-depth distribution possible. Despite extensive exploration of various pre-lithiation techniques, controlling the lithium amount precisely while keeping a homogeneous lithium distribution remains challenging. Here, the thermal evaporation of Li metal as a novel pre-lithiation technique for pure Si anodes that allows both, that is, precise control of the degree of pre-lithiation and a homogeneous Li deposition at the surface is reported. Li nucleation, mechanical cracking, and the ongoing phase changes are thoroughly evaluated. The terms dry-state and wet-state pre-lithiation (without/with electrolyte) are revisited. Finally, a series of electrochemical methods are performed to allow a direct correlation of pre-SEI formation with the electrochemical performance of pre-lithiated Si.

Details about the publication

JournalAdvanced Functional Materials (Adv Funct Mater)
Volume32
Issue22
Article number2201455
StatusPublished
Release year2022 (22/03/2022)
Language in which the publication is writtenEnglish
DOI10.1002/adfm.202201455
KeywordsLithium ion batteries; silicon anodes; pre-lithiation

Authors from the University of Münster

Adhitama, Egy
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Bela, Marlena Maria
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Dias Brandao, Frederico
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Dienwiebel, Iris
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Gómez Martín, Aurora
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Haneke, Lukas
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Javed, Atif
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Placke, Tobias
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Stan, Marian Cristian
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Winter, Martin
Professorship for Applied Materials Science for Electrochemical Energy Storage and Conversion
Münster Electrochemical Energy Technology Battery Research Center (MEET)