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Operando Raman Gradient Analysis for Temperature-Dependent Electrolyte Characterization

delete2024-07-03
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L
Lorenz F. Olbrich
B
Ben Jagger
J
Johannes Ihli
M
Mauro Pasta *
DOI:10.1021/acsenergylett.4c00954delete
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Abstract

Abstract

En 中文
Transport and thermodynamic properties are integral parameters to understand, model, and optimize state-of-the-art and next-generation battery electrolytes. The accurate measurement of these properties is experimentally challenging as well as time- and resource-intensive, and consequently, reports are scarce. Their dependence on temperature is explored even less and is commonly limited to a few temperature points. Recently, we introduced an operando Raman gradient analysis (ORGA) tool to extract transport and thermodynamic properties. Here, we expand the capabilities of ORGA by incorporating a temperature-sensitive external reference into the design. With this enhancement, we are able to visualize the local concentration of any Raman-active species in the electrolyte and detect lithium filament nucleation. We demonstrate and validate this new functionality of ORGA via an examination of lithium bis(fluorosulfonyl)imide (LiFSI) in tetraethylene glycol dimethyl ether (G4) as a function of temperature. All transport properties and activation energies are reported, and the effect of temperature is discussed.
Keywords:
LITHIUM-ION BATTERY
TRANSPORT-PROPERTIES
MASS-TRANSPORT
PARAMETERS
DIFFUSION
LIPF6
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Journal

ACS Energy Letters cover
ACS Energy Letters
IF:
18.2
Papers:
5.2K
Citations:
6.6W

Organization

U
university of oxford
Scholars:
9.7W
Papers: 8.6W
Citations: 137