Lithium Ion Battery ICP-OES e-Methods Pack | PerkinElmer
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Lithium Ion Battery ICP-OES e-Methods Pack

Among the preferred testing techniques to ensure the quality and safety of rechargeable lithium-ion batteries (LiBs) is inductively coupled plasma optical emission spectroscopy (ICP-OES), and PerkinElmer’s trusted Avio® Max ICP-OES series offers different reliable and robust solutions, depending on your application needs.

Whether using the Avio 220 Max or Avio 550 Max instrument, PerkinElmer offers a Li-ion Battery ICP-OES e-Methods Pack which provides all the methods you need in one place. Our e-Methods Pack is a collection of materials to aid in analyzing specific sample types and contains all the critical knowledge you need to get started. With the Lithium-Ion Battery ICP-OES e-Methods Pack, you get all the methods and none of the complexity.

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Overview

PerkinElmer’s Lithium-ion Battery ICP-OES e-Methods Pack, available on Syngistix for ICP software version 5.5 or higher, contains method guides, including sample preparation and instrumental setups. It provides suggested sample introduction and consumables information, with prebuilt methods, all supported by Syngistix software, including a guide showing how to add the methods to your current software.

With our LiBs ICP-OES e-Methods Pack, you’ll benefit from:

  • Staff efficiency, enabling technicians with less formal training to run analyses
  • Time savings for managers and supervisors in busy laboratories
  • Fast setup, greatly decreasing the time needed to implement new analytical methods in the lab
  • Knowledge repository, providing the required knowledge to realize success

Resources, Events & More
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Application Brief

Battery Recycling: The Determination of Major Components in Black Mass with the Avio 550 Max ICP-OES

Reclaiming important metals from recycling spent batteries is a key source of elements vital to lithium batteries. One of the main reclamation processes for spent batteries involves shredding and incinerating the batteries, resulting in a product known as black mass, which contains the metals of int ...

PDF 1 MB

Application Note

Comparing Sample Preparation Strategies for the Determination of Major Components in Black Mass with the Avio 550 Max ICP-OES

With the growing adoption and use of lithium-ion batteries, the need to increase production has also risen. A major challenge of increasing production is acquiring the necessary raw materials, particularly elements common in cathode materials, and while these elements can be extracted from the earth ...

PDF 2 MB
Direct Analysis of Impurities in Lithium Hexafluorophosphate Battery Electrolyte with the Avio 220 Max ICP-OES

As a power supply for green energy, lithium-ion batteries (LiBs) are being widely used across many fields, therefore their increased performance and safety are becoming the new challenge for LiBs manufacturers and researchers. Among all the components in LiBs, the electrolyte is the most critical si ...

PDF 1 MB
High-Precision Analysis of Battery Materials with the Avio 550 Max ICP-OES

Battery usage is growing rapidly as new uses are found, leading to the development of new battery types, technologies, and materials. Some commonly-used elements in different types of batteries include lithium, manganese, nickel, phosphorus, and zinc, among others. The percentage of these components ...

PDF 987 KB
LaserTRAX - Avio 550 Max ICP-OES: Rapid, Acid-Free Analysis of Cathode Powders

Cathode materials, such as LiNixMnyCo 1-x-yO2, are among the most promising materials for improving the performance of batteries. The performance and qualities of these materials can be greatly impacted by the ratio of Ni-Mn-Co and Li, as well as the impurities in the materials. The analysis of thes ...

PDF 1 MB
Lithium-Ion Battery Recycling: Deep Eutectic Solvent Extraction of Cathode Active Materials with the Avio 220 Max ICP-OES

In lithium-ion battery recycling, soft solvometallurgy based on deep eutectic solvents (DESs) is gaining attention as a metal extraction technique due to its combination of high recovery efficiency, low cost, biodegradability and, in some cases, the ability to dissolve metal oxides. This application ...

PDF 2 MB

Flyer

Lithium-Ion Battery ICP-OES e-Methods Pack

The global need to develop new types of batteries is giving rise to a host of different analytical testing techniques needed to ensure the quality and safety of batteries and battery materials. Among the preferred testing techniques is inductively coupled plasma optical emission spectroscopy (ICP-OE ...

PDF 1 MB

Guide

Battery Analysis Guide

This guide offers an overview of analyses required throughout the battery value chain - learn about innovative analytical solutions for testing every part of the battery, including the anode, cathode, binder, separator, and electrolyte. See the value in data generated from a variety of applications ...

PDF 2 MB