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Sigma-Aldrich

Lithium nickel cobalt aluminium oxide

greener alternative

electrode sheet, aluminum substrate, size 5 in. × 10 in.

Sinonimo/i:

NCA

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About This Item

Formula condensata:
LiNi0.8Co0.15Al0.05O2
Codice UNSPSC:
26111700
NACRES:
NA.23

Grado

battery grade

Descrizione

Nominal Voltage: 3.7 V, Li/Li+

Saggio

≥98%

Composizione

loading, ≥80%

Caratteristiche più verdi

Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

Grado di funzionalizzazione

≥80% loading

Misura

5 in. × 10 in.

Spessore

12-25 μm

Dimensione particelle

10-13 μm (typical)

Capacità

150 mAh/g(minimum)
180 mAh/g(nominal at 0.1C)

Punto di fusione

>1000 °C

applicazioni

battery manufacturing

Categoria alternativa più verde

Descrizione generale

Lithium nickel cobalt aluminium oxide (NCA) is a class of electrode material that can be used in the fabrication of lithium-ion batteries. Lithium-ion batteries consist of anode, cathode, and electrolyte with a charge-discharge cycle. These materials enable the formation of greener and sustainable batteries for electrical energy storage.
We are 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.

Applicazioni

NCA is Aluminum doped Lithium nickel cobalt oxide (LNCO). Al doping is found very effective to suppress the cell impedance rise by stabilizing the charge-transfer impedance on the cathode side besides increasing the thermal stability of the material. NCA shows excellent electrochemical performance.

The NCA casted electrode sheets can be cut into appropriate size and is ready to be used in lithium ion batteries.

Altre note

Crystal Structure: Rhombohedral

Operating Condiditons:
  • Recommended maximum charge voltage: 4.3 V vs Li/Li+
  • Recommended maximum charge current: 4C
  • Recommended cut-off voltage for discharge: 3.0 V vs Li/Li+
  • Recommended charge method: constant current - constant voltage

Pittogrammi

Health hazardExclamation mark

Avvertenze

Warning

Indicazioni di pericolo

Classi di pericolo

Carc. 2 - Skin Sens. 1

Codice della classe di stoccaggio

11 - Combustible Solids

Classe di pericolosità dell'acqua (WGK)

WGK 3

Punto d’infiammabilità (°F)

Not applicable

Punto d’infiammabilità (°C)

Not applicable


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I clienti hanno visto anche

Chen, C. H.; et al.
Journal of Power Sources, 128, 278-278 (2004)
Tran, H. Y.; et al.
Journal of the Electrochemical Society, 158, A556-A556 (2011)
The Li-ion rechargeable battery: a perspective
Goodenough JB and Park K
Journal of the American Chemical Society, 135(4), 1167-1176 (2013)
Electrodes with high power and high capacity for rechargeable lithium batteries
Kang K, et al.
Science, 311(5763), 977-980 (2006)
Challenges for rechargeable Li batteries
Goodenough JB and Kim Y
Chemistry of Materials, 22(3), 587-603 (2009)

Articoli

Professor Qiao’s laboratory lays out recent advances in conversion type lithium metal fluoride batteries. This review explores key concepts in developing electrochemically stable microstructures for wide Li-ion insertion channels.

Electrode Materials for Lithium Ion Batteries

Li-ion batteries are currently the focus of numerous research efforts with applications designed to reduce carbon-based emissions and improve energy storage capabilities.

Lithium-ion batteries (LIBs) have been widely adopted as the most promising portable energy source in electronic devices because of their high working voltage, high energy density, and good cyclic performance.

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