Journal article icon

Journal article

Illuminating Polysulfide Distribution in Lithium Sulfur Batteries; Tracking Polysulfide Shuttle Using Operando Optical Fluorescence Microscopy

Abstract:
High-energy-density lithium sulfur (Li–S) batteries suffer heavily from the polysulfide shuttle effect, a result of the dissolution and transport of intermediate polysulfides from the cathode, into the electrolyte, and onto the anode, leading to rapid cell degradation. If this primary mechanism of cell failure is to be overcome, the distribution, dynamics, and degree of polysulfide transport must first be understood in depth. In this work, operando optical fluorescence microscope imaging of optically accessible Li–S cells is shown to enable real-time qualitative visualization of the spatial distribution of lithium polysulfides, both within the electrolyte and porous cathode. Quantitative determinations of spatial concentration are also possible at a low enough concentration. The distribution throughout cycling is monitored, including direct observation of polysulfide shuttling to the anode and consequent dendrite formation. This was enabled through the optimization of a selective fluorescent dye, verified to fluoresce proportionally with concentration of polysulfides within Li–S cells. This ability to directly and conveniently track the spatial distribution of soluble polysulfide intermediates in Li–S battery electrolytes, while the cell operates, has the potential to have a widespread impact across the field, for example, by enabling the influence of a variety of polysulfide mitigation strategies to be assessed and optimized, including in this work the LiNO3 additive.
Publication status:
Published
Peer review status:
Peer reviewed

Actions

Access Document

Publisher copy:
10.1021/acsami.3c14612

Authors

More by this author
Role:
Author
ORCID:
0009-0002-3683-478X
More by this author
Role:
Author
ORCID:
0000-0002-6509-7769
More by this author
Role:
Author
ORCID:
0000-0002-2224-5768


Publisher:
American Chemical Society
Journal:
ACS Applied Materials and Interfaces More from this journal
Volume:
16
Issue:
16
Pages:
20329-20340
Publication date:
2024-04-10
Acceptance date:
2024-03-08
DOI:
EISSN:
1944-8252
ISSN:
1944-8244


Language:
English
Keywords:
Pubs id:
1991135
Local pid:
pubs:1991135
Source identifiers:
1921025
Deposit date:
2024-07-20
ARK identifier:
This ORA record was generated from metadata provided by an external service. It has not been edited by the ORA Team.

Terms of use


Views and Downloads






If you are the owner of this record, you can report an update to it here: Report update to this record

TO TOP