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759546 Aldrich

Lithium iron(II) phosphate Green Alternative

powder, <5 μm particle size (BET), >97% (XRF)

Synonym: Ferrous lithium phosphate, Iron lithium phosphate, LFP, Triphylite

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Properties

Related Categories Alternative Energy, Battery Electrode Materials, Cathode Materials, Chemical Synthesis, Electrode Materials,
assay   >97% (XRF)
form   powder
greener alternative product characteristics   Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.
particle size   <5 μm (BET)
mp   >300 °C(lit.)
Featured Industry   Battery Manufacturing

Description

Packaging

5 g in glass bottle

Application

Lithium Iron Phosphate is very widely used storage cathode for rechargeable Li batteries. High energy density, wide operating temperature, thermal stability, long cycle life and application life, environmental friendliness and safety makes them promising electrode material for greener and safer Lithium ion batteries.

General description

Sigma Life Science is committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Find details here.

Legal Information

Product of nGimat, LLC.

Price and Availability

Safety & Documentation

Safety Information

RIDADR 
NONH for all modes of transport

Documents

Certificate of Analysis

Certificate of Origin

Protocols & Articles

Articles

Electrode Materials for Lithium Ion Batteries

In 2010, the rechargeable lithium ion battery market reached ~$11 billion and continues to grow.1 Current demand for lithium batteries is dominated by the portable electronics and power tool industri...
Kinson C. Kam and Marca M. Doeff
Material Matters, 2012 v7, n4
Keywords: Applications, Atomic absorption spectroscopy, Automotive, Degradations, Electronics, Industries, Ion Exchange, Legal, Oxidations, Precipitation, Purification, Reductions, Renewable energy, Search, Substitutions

Electrolyte Reagents for Lithium-Ion Batteries

Introduction Battery grade electrolytes Solvents and additives Preparation of customized battery grade electrolyte solutions Materials References
Dr. Koji Abe
Advanced Energy Materials R&D Center, Chemicals Company, UBE Industries, Ltd.
Keywords: Acid value, Industries, Solvents

Lithium-Ion Battery Performance: Dependence on Material Synthesis and Post‑Treatment Methods

Dr. Qifeng Zhang, Mr. Evan Uchaker, and Dr. Guozhong Cao* Department of Materials Science and Engineering University of Washington Seattle, WA 98195-2120 *Email: gzcao@u.washington.edu
Keywords: Absorption, Deposition, Diffraction, Diffusion, Electrochemical reactions, Materials Science, Nanomaterials, Nanotubes, Nucleic acid annealing, Oxidations, Precipitation, Redox Reactions, Reductions, X-Ray diffraction

Nanostructured Olivine-based Cathode Materials for Lithium-ion Batteries

Vishwanathan Ramar and Palani Balaya* Department of Mechanical Engineering National University of Singapore, Singapore-117576 *Email: mpepb@nus.edu.sg
Vishwanathan Ramar, Palani Balaya
Material Matters, 2016, 11.1, 23
Keywords: Diffraction, Microscopy, Nanomaterials, Oxidations, Redox Reactions, Reductions, Renewable energy, Scanning electron microscopy, Solvents, Substitutions, Transmission electron microscopy, X-Ray diffraction

Olivine-Type Cathode Materials for Lithium-Ion Batteries

Izumi Taniguchi Department of Chemical Engineering Graduate School of Science and Engineering, Tokyo Institute of Technology 12-1, Ookayama-2, Meguro-ku, Tokyo 152-8552, Japan Email: taniguchi.i.aa@m...
Keywords: Atomic absorption spectroscopy, Deposition, Diffraction, Microscopy, Precipitation, Redox Reactions, Reductions, Scanning electron microscopy, Sol-gel, Spectroscopy, Transmission electron microscopy, X-Ray diffraction

Safer High-performance Electrodes, Solid Electrolytes, and Interface Reactions for Lithium-Ion Batteries

Yves J. Chabal, Kyeongjae Cho, and Christopher L. Hinkle* (Roberto C. Longo, K. C. Santosh, Amandeep K. Sra, David E. Arreaga-Salas, and Katy Roodenko; not pictured) Department of Materials Science a...
Keywords: Absorption, Chemical reactions, Deposition, Diffusion, Electronics, Infrared spectroscopy, Lithiations, Materials Science, Oxidations, Solvents, Spectroscopy, transformation

Scaling Up High-Energy Cathode Materials for Electric Vehicles

Young Ho Shin, Ozgenur Kahvecioglu Feridun, Gregory Krumdick Materials Engineering Research Facility, Energy Systems Division, Argonne National Laboratory 9700 S. Cass Avenue, Argonne, IL, 60439 Emai...
Keywords: Crystallization, Diffraction, Lithiations, Microscopy, Oxidations, Precipitation, Scanning electron microscopy, X-Ray diffraction

Peer-Reviewed Papers
15

References

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