
One-Sentence Definition
A lithium-ion battery (Li-ion) is a rechargeable energy storage device that generates electricity by the reversible movement of lithium ions between the anode and cathode through an electrolyte, offering high energy density and long cycle life for a wide range of applications.[UL Research Institutes]
Detailed Explanation
Lithium-ion batteries are the dominant rechargeable battery technology in today’s world, powering everything from smartphones and laptops to electric vehicles and industrial equipment. Their operation is based on the movement of lithium ions between two electrodes—anode (typically graphite) and cathode (various lithium metal oxides)—through a liquid or gel electrolyte. During discharge, lithium ions move from the anode to the cathode, releasing energy; charging reverses this process. This chemistry enables high energy density, low self-discharge, and the ability to deliver hundreds to thousands of charge cycles.[DOE]
Key Components
- Anode: Usually made of graphite, stores lithium ions during charging.
- Cathode: Made from lithium metal oxides (e.g., NMC, LFP, NCA), determines energy density and safety.
- Electrolyte: Organic solvent with lithium salt, enables ion movement.
- Separator: Porous polymer film preventing short circuits while allowing ion flow.
- Current Collectors: Conductive foils that connect electrodes to external circuits.
- Battery Management System (BMS): Monitors and protects the battery, ensuring safe operation, balancing cells, and preventing overcharge/discharge.[Synopsys]
Chemistry Variants and Performance
Li-ion batteries come in several chemistries, each with unique strengths:
- NMC (Nickel Manganese Cobalt Oxide): High energy density, widely used in electric vehicles and industrial applications.
- LFP (Lithium Iron Phosphate): Superior safety, long cycle life, and thermal stability, ideal for stationary storage and safety-critical uses.
- NCA (Nickel Cobalt Aluminum Oxide): Very high energy density, used in high-performance EVs (e.g., Tesla).
- LCO (Lithium Cobalt Oxide): Common in consumer electronics for high energy density.
Typical energy density ranges from 150–260 Wh/kg, with cycle life from 500 to over 2,000 cycles depending on chemistry and usage.[Battery University]
Safety and International Standards
Safety is paramount in Li-ion battery design. Key international standards include:
- UL (Underwriters Laboratories): Rigorous safety certification (e.g., UL 1642, UL 2054).
- CE (Conformité Européenne): Mandatory for products in the European Economic Area.
- RoHS: Restricts hazardous substances.
- IEC 62133: Global safety standard for rechargeable batteries. Compliance ensures batteries are tested for electrical, mechanical, and thermal safety, reducing risks of fire or explosion.[Batteries Inc.]
Real-World Applications
Li-ion batteries are integral to:
- Smart home devices (z. B. Sensoren, Sicherheitssysteme)
- Handgehaltene Elektronik (z. B. Smartphones, Tablets)
- Industrielle Ausrüstung (z. B. Robotik, Notstromversorgung)
- Elektrofahrzeuge und Energiespeichersysteme
Yungbang ist auf kundenspezifische Li-Ionen-Akkus für B2B-Kunden in den Bereichen Smart Home, Industrie und Unterhaltungselektronik spezialisiert und unterstützt über 2.500 Kunden in mehr als 30 Ländern. Alle Produkte erfüllen internationale Zertifizierungen (UL, CE, RoHS) und werden durch fortschrittliche BMS-Technologie für Sicherheit und Zuverlässigkeit unterstützt. Erfahren Sie mehr über Yungbang's kundenspezifische Lösungen.
Verwandte Konzepte
- Lithium-Polymer-Akku (LiPo): Eine Variante mit einem Polymerelektrolyt für flexible Formfaktoren.
- Battery Management System (BMS): Wesentlich für Sicherheit, Leistung und Langlebigkeit.
- 18650: Ein gängiges zylindrisches Li-Ionen-Zellenformat.
- Energiedichte: Die Menge an gespeicherter Energie pro Masseneinheit.
- Zyklus Lebensdauer: Anzahl der Lade-/Entladezyklen vor einem signifikanten Kapazitätsverlust.
- Thermisches Durchgehen: Ein Sicherheitsrisiko, bei dem übermäßige Hitze zu unkontrollierbaren Reaktionen führt.
Tiefer gehende Informationen finden Sie unter BU-205: Arten von Lithium-Ionen und Ossilas technischer Überblick.
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