We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Battery electrolyte.
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Battery electrolyte Product List and Ranking from 4 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Battery electrolyte Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. AndTech Kanagawa//Service Industry
  2. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  3. null/null
  4. 4 エーゼーゴム洋行 Osaka//Trading company/Wholesale
  5. 4 ENCHEM 株式会社ENCHEM South Korea//Chemical

Battery electrolyte Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Safety of lithium-ion secondary battery electrolytes/additives and their effects. AndTech
  2. [Analysis Case] Evaluation of Main Components of Lithium-ion Secondary Battery Electrolyte 一般財団法人材料科学技術振興財団 MST
  3. Tohoku University Technology: Calcium battery and its electrolyte and composition: T20-1055
  4. Secondary battery electrolyte エーゼーゴム洋行
  5. 4 Electrolyte for secondary batteries ENCHEM 株式会社ENCHEM

Battery electrolyte Product List

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Safety of lithium-ion secondary battery electrolytes/additives and their effects.

A book specialized in how to control performance with electrolytes!

【Publication Date】 March 14, 2014 【Format】 A4 size, 160 pages 【Publisher】 AndTech Co., Ltd. 【Authors】 Takahisa Osaki, Osaki Technical Consulting Yasutaka Tanaka, Shizuoka University Kaoru Nakajima, LIB Technology Advisor & Consultant Shinichi Tobishima, Gunma University Etsuro Iwama, Tokyo University of Agriculture and Technology Katsuhiko Naoi, Tokyo University of Agriculture and Technology Kazuaki Matsumoto, NEC Seishi Kanemura, Tokyo Metropolitan University Yukihiro Okuno, Fujifilm Corporation Keisuke Goshia, Fujifilm Corporation Keitaro Soyama, Kyoto University Yoshitaka Tateyama, National Institute for Materials Science Yuria Saito, National Institute of Advanced Industrial Science and Technology Takeshi Akiyama, Toray Research Center, Inc. Shuichi Sugawara, Izumi Chemical Industry Co., Ltd. Hirohide Horio, Morita Chemical Industries Co., Ltd., Morita Chemical (Zhangjiagang) Co., Ltd.

  • Company:AndTech
  • Price:10,000 yen-100,000 yen
  • Lithium-ion battery
  • Technical and Reference Books
  • Secondary Cells/Batteries

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Secondary battery electrolyte

Secondary battery electrolyte (Korean manufacturer)

I would like to introduce a South Korean secondary battery electrolyte manufacturing company. Company Information and Product Description Company Name: ENCHEM / Headquarters Location: Cheonan / Employees: 830 / Revenue: 510 billion won https://enchem.net Production Facilities: South Korea (Cheonan), China, Poland, United States In-house production of key raw materials (solvents, salts, additives) to establish a stable long-term supply chain High ionic conductivity / High chemical and electrochemical stability / Usable over a wide temperature range / Excellent safety / Price competitiveness

  • power supply

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[Analysis Case] Evaluation of Main Components of Lithium-ion Secondary Battery Electrolyte

We will dismantle and analyze regardless of the experimental cell.

This is an example of evaluating the organic solvent components of an electrolyte using GC/MS analysis. The measurement of the electrolyte in lithium-ion secondary batteries revealed that the main components of the organic solvents are ethylene carbonate (EC) and propylene carbonate (PC). Other components detected included diethyl carbonate (DEC) and sulfur compounds, with the latter possibly originating from additives.

  • Contract measurement

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[Analysis Case] Analysis of LIB Electrolyte Using Molecular Dynamics Simulation

The microstructure of solvent hydration can be obtained at the specified concentration and temperature.

The electrolyte used in lithium-ion batteries is generally composed of a solvent and an electrolyte salt, and is considered a homogeneous system on a macroscopic scale. However, from a microscopic perspective, phenomena such as solvation occur. Understanding the local structure of lithium-ion solvation and the reactions that occur when inserting into the positive and negative electrodes is important for the design of high-performance battery materials. This document presents a case study that evaluates the microscopic structure of lithium-ion solvation in the electrolyte of lithium-ion batteries using molecular dynamics simulations.

  • Contract Analysis

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