loading

 sales@gsl-energy.com     0086 13923720280

South Korea's development of solid ionic conductor is expected to become the next generation of raw material of the battery

The study will be fixed in the path the lithium ion, anion and use with lithium ion pairing of anionic monomer synthesis organic skeleton structure. Leshan golden concord group as an alternative, photovoltaic sun room business solid electrolyte are being developed, but its ionic conductivity is lower than the liquid electrolyte. Due to the lithium ion is cation, so it's easy to moves with anion. The conductor can be selectively, effectively conveying lithium ion, and completely without having to use easy explosion of organic solvents, has the special significance. How to check the white electric wind

in computer science, the lithium ions along the regular arrangement of oxygen ion conductor channel. It is very important to the commercialization of the next generation of batteries, including all solid-state batteries. Especially in the case of improve battery performance, a lot of solid electrolyte have limitations, complex because of the ion migration path twists and turns. So, only flowing lithium ion in the channel, the realization of the ideal flow state. Single lithium ion conductive behavior refers to the ideal case, only the lithium ions through the electrolyte transport. ” At present, used in lithium ion battery is highly flammable liquid electrolyte, very easy to fire or explosion. In the process of research, the team display & other; Solid ionic conductor & throughout; A new concept, can be selectively make lithium ions by ion channels. Leshan golden concord group & throughout; Professor Lee said: & other; The study provide a new direction for the design of the solid ionic conductor, for & lsquo; High performance solid electrolyte & rsquo; The development of the foundation. Unnecessary negative ion migration will cause side effects in the electrode surface, temperature of heat conversion formula reduce battery performance. The study's first author, UNIST energy and chemical engineering school of Kihun Jeong, 'said Dr. & other; New development of ion conductor is a kind of completely without the use of liquid solid phase carrier, a single solid state lithium ion conductive behavior. By regularly arranged inside the material lithium ion channels, greatly improve the ionic conduction performance. Temperature heat conversion formula according to the report, ulsan national institute of science and technology ( UNIST) Researchers, demonstrated a new solventless single lithium ion conductive covalent organic skeleton. Professor Lee using porous crystal material as ion conductor, such as covalent organic skeleton ( COF) To solve this problem. The researchers determined theoretically computational chemistry purposes. Because they are solid, photovoltaic solar sun room stent market business and can efficiently transport lithium ion, solar stent market is expected to become the next generation of battery materials, such as high voltage battery or lithium battery. These ionic conductor is not only suitable for as a solid electrolyte battery, and can be applied to highly active lithium metal electrodes. The study by UNIST Sang - energy and chemical engineering college professor Young Lee and Sang Kyu Kwak Shared leadership.

GET IN TOUCH WITH Us
recommended articles
SERVICEs INFO CENTER Inverter Compatibility
Why On-Site Engineering Support Matters for Battery Energy Storage Systems
A BESS project involves more than battery hardware. Explore why on-site engineering support, BMS verification, commissioning, and system integration matter for reliable energy storage—and how GSL Energy supports projects in the Middle East.
GSL ENERGY and Garman Energy Sign Strategic Partnership to Advance Energy Storage Solutions in Yemen
Shenzhen, China — GSL ENERGY, a global manufacturer of lithium battery energy storage systems, has officially signed a strategic cooperation agreement with Garman Energy (Hamoud Garman Brothers Trading Co., Ltd.), a Yemen-based energy company, to accelerate the adoption of advanced energy storage solutions and support sustainable energy development in Yemen.
GSL ENERGY Launches 125kW/418kWh Liquid-Cooled C&I Energy Storage System to Accelerate Global Energy Transformation
GSL ENERGY launches a 125kW/418kWh liquid-cooled C&I energy storage system with a high-voltage LiFePO₄ battery, smart EMS, flexible expansion, and advanced safety protection for global industrial and commercial applications.
10kWh GSL ENERGY Battery Storage System Installed with GoodWe Inverter in the Philippines
A residential energy storage project in the Philippines featuring two GSL ENERGY 5kWh wall-mounted LiFePO₄ batteries connected in parallel with a GoodWe hybrid inverter. The 10kWh battery system provides reliable solar backup power with a compact and efficient installation design.
Air-Cooled Commercial ESS Installation Guide: How to Ensure Proper Battery Cabinet Clearance and System Performance
Proper installation is essential for maximizing the safety, efficiency, and service life of commercial energy storage systems. This guide explains the recommended clearance requirements for air-cooled commercial ESS cabinets, including the 914mm spacing needed around the battery enclosure to ensure effective airflow, heat dissipation, and convenient maintenance. Learn how professional C&I BESS installation practices help improve system reliability across solar storage, microgrid, and industrial energy applications.
Thailand Commercial Energy Storage Project: GSL Energy Deploys 186kWh High Voltage BESS with 50kVA Deye Inverter
GSL Energy successfully deployed an 186kWh high-voltage LiFePO₄ energy storage system integrated with a 50 kVA Deye hybrid inverter in Thailand, providing a reliable commercial and industrial (C&I) energy storage solution. The system is designed to support solar energy utilization, peak shaving, backup power, and intelligent energy management, helping local businesses improve electricity efficiency and enhance energy independence. Built with advanced high-voltage battery technology and a smart power conversion platform, this project demonstrates GSL Energy's capability in delivering safe, scalable, and customized BESS solutions for Southeast Asia’s growing renewable energy market.
GSL Energy Completes New Battery Shipment, Demonstrating Strong Manufacturing and Global Energy Storage Supply Capability
GSL Energy has completed another shipment of LiFePO₄ battery storage systems, highlighting its strong manufacturing capability, strict quality control, and reliable supply chain support for global residential, commercial, and industrial energy storage projects.
Yemen Water Plant Deploys 2MWh High Voltage Battery Energy Storage System with GSL Energy and Deye
A water treatment plant in Yemen adopts a 2.49 MWh high-voltage battery energy storage system from GSL Energy, integrated with Deye hybrid inverters to build a reliable solar microgrid solution for industrial energy supply.
Malaysia Remote Village Uses 300kWh Solar Battery Storage System to Build Reliable Off-Grid Microgrid
GSL Energy installed a 300kWh off-grid solar battery storage system in Malaysia, combining solar PV and LiFePO4 batteries to provide reliable electricity for remote villages and microgrid applications.
  Tel: +86 755 84515360
 Address: A602, Tianan Cyber Park, Huangge North Road, Longgang District, Shenzhen, China
GSL ENERGY - A leading green energy supplier in China since 2011

0086 13923720280

Solar energy storage battery manufacturer contact information
Contact us
whatsapp
Contact customer service
Contact us
whatsapp
cancel
Customer service
detect