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Analysis of Major and Trace Constituents in Li-ion Battery Electrolyte Solutions using ICPOES

RECORD | Already taken place Tu, 28.2.2023
We will deliver a broad overview of Li-ion battery architecture and the raw materials that go into them, a discussion of preparation of standards for neat analysis of EC/DEC/DMC.
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Agilent Technologies: Elementar Analysis of Lithium-on (Li-ion) Batteries

Agilent Technologies: Elementar Analysis of Lithium-on (Li-ion) Batteries

Early research in rechargeable Li-ion batteries stretches back as far as the 1960s with the first commercially available rechargeable battery becoming available in 1991. With the more recent onset of cellular telephones, electronic wearables, and electric vehicles, along with the drive toward green energy, there has been increasing interest in Li-ion battery technology that can provide greater energy density as well as greater safety and stability. This research has led to the development of many new anode, cathode, and electrolyte materials, all of which require elemental testing to verify purity and trace element content.

We will deliver a broad overview of Li-ion battery architecture and the raw materials that go into them, a discussion of preparation of standards for neat analysis of EC/DEC/DMC, a review of data collected from ICP-OES analysis of electrolyte solutions, and tips and tricks to improve the quality of your battery-related elemental analysis.

Presenter: Greg Gilleland (Application Scientist, Agilent Technologies, Inc.)

Greg began his spectroscopy career in 1987 in Colorado, working at a series of environmental labs. After 14 years working in the world of commercial environmental labs, he moved on to a spectroscopy instrument manufacturer where he performed service and sales functions over the course of 11 years. He has been with Agilent Technologies, Inc., since 2012 in the role of Application Scientist for ICP-OES, MP-AES and AA products.

Agilent Technologies
 

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