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SEM micrograph of high-voltage LCO showing dense spherical particle morphology
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Home Cathodes Lithium cathode LCO 4.5V High Capacity LCO Powder (LiCoO2) – Premium Cathode Material for UAV and Smartphone Batteries
SEM image of KY186s Ni82 cathode material showing spherical secondary particles
KY186s High-Nickel Ni82 NCM Cathode Material for Lithium-ion Batteries
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4.5V High Capacity LCO Powder (LiCoO2) – Premium Cathode Material for UAV and Smartphone Batteries

LC20X 4.5V is a specialized high-voltage Lithium Cobalt Oxide (LiCoO2) designed for premium energy storage applications. By boosting the charging cut-off voltage to 4.5V, it delivers a significantly higher discharge capacity (≥185 mAh/g) and energy density than standard LCO. This material is the top choice for ultra-thin smartphones, high-performance drones (UAVs), and wearable electronics.

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Categories: Cathodes, LCO, Lithium cathode Tags: 4.5V High Voltage, cathode material, High Capacity, LCO, lithium cobalt oxide, Mobile Electronics, UAV Battery
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  • Description
Description

High Voltage 4.5V Lithium Cobalt Oxide Cathode Material for High Energy Density Batteries

Our 4.5V High-Voltage LCO series utilizes advanced surface coating and cation doping technologies to stabilize the crystal structure under high-potential charging. Unlike conventional LCO, this material prevents structural degradation at 4.5V, allowing for a breakthrough in volumetric energy density—essential for modern, slim electronic designs.

Property Specification
Cut-off Voltage 4.5V (vs. Li/Li+)
1st Discharge Capacity (0.1C) ≥ 185 – 190 mAh/g
1st Efficiency ≥ 95%
D50 Particle Size 15.0 – 18.0 μm
Tap Density ≥ 2.8 g/cm³
Moisture Content ≤ 0.03%
ltemUnitStandardTypical
Chemical composition ChemioaCompositionsLi%7.00±0.407.04
Co%59.00±0.759.00
ImpuritiesImpurityFeppm≤50.014
Nippm≤50.03
Nappm≤200.084
Cuppm≤50.01
Particle size distribution Particle SizeDistributionD10μm≥3.55.06
D50μm16.5±2.016.55
D90μm≤40.030.40
D99μm≤55.042.20
PH/10.00±0.59.97
Li impuritiesLi₂CO₃%≤0.0250.010
LiOH%≤0.0150.002
Moistureppm≤20080
Specific surface areaSpecific Surface Aream²/g0.15±0.060.14
Tap densityTap Densityg/cm³≥2.603.03
Magnetic materialsMagnetic substanceppb≤20076
First discharge capacity1"Discharge CapacitymAh/g≥192.5194.0
First efficiency1#efficiency%≥92.0093.2

Key Performance Benefits

  • High Energy Ceiling: Extends the usable capacity of lithium-ion cells by pushing the voltage limit safely.

  • Structural Integrity: Minimized cobalt dissolution and phase transition issues during high-voltage cycling.

  • Excellent Rate Capability: Optimized particle morphology ensures fast lithium-ion diffusion.

  • Consistency: Strict batch-to-batch control for magnetic impurities and pH levels.

Applications

  • Smartphones & Tablets: Maximizing battery life in limited internal spaces.

  • UAVs / Drones: Providing the high power and high capacity needed for extended flight times.

  • Premium Wearables: Reliable performance for compact, high-end consumer tech.

    Frequently Asked Questions (FAQ) – KY-LCO 4.5V

    Q1: What is the main advantage of 4.5V LCO compared to standard 4.2V or 4.35V LCO?

    A: The primary advantage is a significant increase in volumetric energy density. By increasing the charging cut-off voltage to 4.5V, the lithium-ion extraction depth is deeper, resulting in a higher discharge capacity (up to 185-190 mAh/g). This allows battery manufacturers to create smaller, thinner batteries with longer runtimes for high-end smartphones and UAVs.

    Q2: How does your 4.5V LCO maintain structural stability at such high voltage?

    A: Our KY-series 4.5V LCO utilizes advanced surface coating (such as Al2O3 or metal phosphates) and multi-element cation doping. These treatments stabilize the crystal lattice and suppress the phase transition from the O3 to H1-3 phase, effectively preventing oxygen release and cobalt dissolution during high-potential cycles.

    Q3: What are the recommended electrolyte requirements for 4.5V LCO systems?

    A: To fully leverage the performance of 4.5V LCO, we recommend using a high-voltage stable electrolyte. This typically includes functional additives (like PS, LiPO2F2, or nitrile additives) that form a robust CEI (Cathode Electrolyte Interphase) layer, preventing electrolyte decomposition at potentials above 4.4V.

    Q4: Is this 4.5V LCO compatible with existing battery manufacturing processes?

    A: Yes. Our LCO powder is designed with a optimized particle size distribution (D50: 15-18 μm) and high tap density. It offers excellent processing performance, ensuring easy slurry preparation, uniform electrode coating, and high compaction density during the calendering process.

    Q5: What is the typical cycle life performance of KY-LCO at 4.5V?

    A: Under controlled testing conditions (full cell, 0.5C/1C cycle), our 4.5V LCO can maintain over 80% capacity retention after 500+ cycles, provided it is paired with a compatible anode and optimized high-voltage electrolyte.

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