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Prussian Blue Na2Fe2(CN)6 Powder for Sodium Ion Battery Cathode - SIB-NFCN
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Prussian Blue Na2Fe2(CN)6 Powder for Sodium Ion Battery Cathode - SIB-NFCN

Prussian Blue Na2Fe2(CN)6 Powder for Sodium Ion Battery Cathode - SIB-NFCN

Prussian Blue powder with micro or nano-size is a competitive candidate for cathode material of rechargeable metal-ion batteries (monovalent metal such as Na and K and multivalent metal, e.g. Mg, Ca, Zn, and Al) due to their stable frame structures, tunable redox sites, and facile synthesis methods.
SIB-NFCN provides 120 mAh/g first discharge capacity.

Specifications:

Package 
  • 1 g/bottle or 100 g/bottle
Chemical Formula
  • Na2Fe2(CN)6
Chemical Composition
  • Na: 40 ±1 %
  • Fe: 55±1 %
Size Distribution (1) SIB-NFCN: D10: 4.2 um; D50: 19.9 um; D90: 47.6 um

(2) SIB-NFCN-100: D10: 1.2 um, D50: 4.8 um, D90: 9.1 um
Tap Density 
  • 0.95 g/cm3
Powder Color
  • Blue
Specific Surface Area
  • 0.68 m2/g
Voltage Range
  • 2.1-3.8 V
Specific Capacity
  • 122 mAh/g

Reference literatures:
1. W. Wang, et al. Reversible structural evolution of sodium-rich rhombohedral Prussian blue for sodium-ion batteries, Nat. Commun. 2020, 11, 890.
2. J. Peng, et al. Prussian Blue Analogues for Sodium-Ion Batteries: Past, Present, and Future, Adv. Mater. 2022, 34, 2108384. 

Application Notes
  1. Please click to see Procedure for Preparing Anode & Cathode Electrode Slurry.
  2. Please keep the powder in a vacuum box to avoid moisture.


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Original: $148.00

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Prussian Blue Na2Fe2(CN)6 Powder for Sodium Ion Battery Cathode - SIB-NFCN

$148.00

$51.80

Prussian Blue Na2Fe2(CN)6 Powder for Sodium Ion Battery Cathode - SIB-NFCN

Prussian Blue powder with micro or nano-size is a competitive candidate for cathode material of rechargeable metal-ion batteries (monovalent metal such as Na and K and multivalent metal, e.g. Mg, Ca, Zn, and Al) due to their stable frame structures, tunable redox sites, and facile synthesis methods.
SIB-NFCN provides 120 mAh/g first discharge capacity.

Specifications:

Package 
  • 1 g/bottle or 100 g/bottle
Chemical Formula
  • Na2Fe2(CN)6
Chemical Composition
  • Na: 40 ±1 %
  • Fe: 55±1 %
Size Distribution (1) SIB-NFCN: D10: 4.2 um; D50: 19.9 um; D90: 47.6 um

(2) SIB-NFCN-100: D10: 1.2 um, D50: 4.8 um, D90: 9.1 um
Tap Density 
  • 0.95 g/cm3
Powder Color
  • Blue
Specific Surface Area
  • 0.68 m2/g
Voltage Range
  • 2.1-3.8 V
Specific Capacity
  • 122 mAh/g

Reference literatures:
1. W. Wang, et al. Reversible structural evolution of sodium-rich rhombohedral Prussian blue for sodium-ion batteries, Nat. Commun. 2020, 11, 890.
2. J. Peng, et al. Prussian Blue Analogues for Sodium-Ion Batteries: Past, Present, and Future, Adv. Mater. 2022, 34, 2108384. 

Application Notes
  1. Please click to see Procedure for Preparing Anode & Cathode Electrode Slurry.
  2. Please keep the powder in a vacuum box to avoid moisture.


Related Products


Vacuum Storage Box
laboratory mill and mixer
Powder Milling & Mixer
 
Electrode Coaters

Battery Research Equipment

Other Battery Powder

 

 

Product Information

Shipping & Returns

Description

Prussian Blue powder with micro or nano-size is a competitive candidate for cathode material of rechargeable metal-ion batteries (monovalent metal such as Na and K and multivalent metal, e.g. Mg, Ca, Zn, and Al) due to their stable frame structures, tunable redox sites, and facile synthesis methods.
SIB-NFCN provides 120 mAh/g first discharge capacity.

Specifications:

Package 
  • 1 g/bottle or 100 g/bottle
Chemical Formula
  • Na2Fe2(CN)6
Chemical Composition
  • Na: 40 ±1 %
  • Fe: 55±1 %
Size Distribution (1) SIB-NFCN: D10: 4.2 um; D50: 19.9 um; D90: 47.6 um

(2) SIB-NFCN-100: D10: 1.2 um, D50: 4.8 um, D90: 9.1 um
Tap Density 
  • 0.95 g/cm3
Powder Color
  • Blue
Specific Surface Area
  • 0.68 m2/g
Voltage Range
  • 2.1-3.8 V
Specific Capacity
  • 122 mAh/g

Reference literatures:
1. W. Wang, et al. Reversible structural evolution of sodium-rich rhombohedral Prussian blue for sodium-ion batteries, Nat. Commun. 2020, 11, 890.
2. J. Peng, et al. Prussian Blue Analogues for Sodium-Ion Batteries: Past, Present, and Future, Adv. Mater. 2022, 34, 2108384. 

Application Notes
  1. Please click to see Procedure for Preparing Anode & Cathode Electrode Slurry.
  2. Please keep the powder in a vacuum box to avoid moisture.


Related Products


Vacuum Storage Box
laboratory mill and mixer
Powder Milling & Mixer
 
Electrode Coaters

Battery Research Equipment

Other Battery Powder

 

 

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