ICPMS
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike
Organizer
Wiley
Wiley
For over 200 years we have been helping people and organizations develop the skills and knowledge they need to succeed. We develop digital education, learning, assessment, and certification solutions to help universities, businesses, and individuals move between education and employment and achieve their ambitions.
Tags
Microscopy
LinkedIn Logo

Intrinsic Structure of Sodium Battery Interfaces via cryoEM

RECORD | Already taken place Th, 10.4.2025
Join us for an enlightening webinar on the intrinsic structure of sodium battery interfaces, explored through advanced cryoEM techniques.
Go to the webinar
Wiley: Intrinsic Structure of Sodium Battery Interfaces via cryoEM
Wiley: Intrinsic Structure of Sodium Battery Interfaces via cryoEM

Join us for an enlightening webinar on the intrinsic structure of sodium battery interfaces, explored through advanced cryoEM techniques. Sodium metal anodes with liquid electrolytes present a promising solution for affordable large-scale energy storage. However, understanding the degradation mechanisms has been challenging due to the difficulty in accessing the buried interfaces without deconstructing the cell.

By utilizing cryogenic focused ion beam (cryoFIB) milling and cryogenic electron microscopy (cryoEM), we can observe and characterize the entire intact cell, revealing the intrinsic structure and composition of these interfaces. This webinar will uncover the morphology of plated sodium and the solid-electrolyte interphase (SEI), providing a deeper understanding of the degradation mechanisms. We propose a novel degradation method involving the infiltration of separator pores, rather than traditional dendritic piercing. Additionally, the effect of electrolyte solvent on observed degradation methods will be investigated. A comprehensive cryogenic workflow for studying intact coin cells from the microscale to the atomic scale will also be introduced.

Presenter: Kevin Matthews (Texas Materials Institute - University of Texas at Austin)

Presenter: Seth Villarreal (Advanced Workflow Specialist – Sample Preparation, Leica Microsystems)

Wiley
LinkedIn Logo
 

Related content

Routine Analysis of Rare Earth Elements in Basalt using ICP-MS

Applications
| 2026 | Agilent Technologies
Instrumentation
ICP/MS
Manufacturer
Agilent Technologies
Industries
Materials Testing

Analysis of rare earth elements in clay using XRF and XRD

Applications
| 2026 | Thermo Fisher Scientific
Instrumentation
XRD
Manufacturer
Thermo Fisher Scientific
Industries
Materials Testing

Measurement of TOC in Chloroisocyanuric Acid Used as Disinfectant

Applications
| 2026 | Shimadzu
Instrumentation
TOC
Manufacturer
Shimadzu
Industries
Pharma & Biopharma

High Precision Analysis of Major Components in Precious Metals by ICP-OES

Applications
| 2025 | Agilent Technologies
Instrumentation
ICP-OES
Manufacturer
Agilent Technologies
Industries
Materials Testing

Analysis of Heavy Metals in Baby FoodUsing ICP-MS

Applications
| 2025 | Shimadzu
Instrumentation
ICP/MS
Manufacturer
Shimadzu
Industries
Food & Agriculture
Other projects
GCMS
LCMS
Follow us
FacebookLinkedInYouTube
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike