Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material

Product Details
Customization: Available
Type: Lithium Metal Battery
Cathode Material: Nvp
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  • Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
  • Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
  • Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
  • Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
  • Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
  • Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
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  • Overview
  • Product Overview
  • FEATURES AT A GLANCE
  • PRODUCT SPECIFICATIONS
  • SALES AND SERVICE NETWORK
  • Successful Project
  • SIMILAR PRODUCTS
  • FAQ
Overview

Basic Info.

Model NO.
NVP
Size
Small
First Discharge Efficiency %
≥ 90%
Particle Size D50 Um
1.0~2.0
Tap Density g/cm3
0.7
Carbon Content %
1.5~2.5
Specific Capacity mAh/G (0.1c)
155
Anode Material
LFP
Battery Size
26500
Specific Surface Area M2/G
12.0~22.0
Weight
1kg
Storage Type
Rt 20c
Compaction Density g/cm3
2.2
Application
Electric Vehicles
Room Temperature Conductivity (S/Cm)
1X10 -4
Transport Package
CTN
Trademark
GELON
Origin
Guangdong, China
Production Capacity
1000 Kilogram/Kilograms Per Day

Product Description

Product Overview

 

LMFP 64 73 82
The theoretical capacity of lithium iron manganese phosphate is 170mAh/g, which is the same as that of lithium iron phosphate, but its electrode potential relative to Li+/Li is 4.1V, which is much higher than the 3.4V of lithium iron phosphate, and it is located in the stable electricity of the organic electrolyte system. Chemistry window. The high potential of 4.1V gives lithium iron manganese phosphate the potential advantage of high energy density, which is the biggest advantage over lithium iron phosphate. In addition, the raw material cost of lithium iron manganese phosphate is low, environmentally friendly, and the material has a broad market prospect.
FEATURES AT A GLANCE
It can be seen from the scanning electron micrograph that the morphology of the finished LMFP is irregular spherical, most of the particle size is 100~200nm. Through the eough electron microscope image, it can be seen that the carbon coating layer of LMFP is relatively uniform
 
 
 
Right elevation
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
Left elevation
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
Front elevation
 
PRODUCT SPECIFICATIONS
 
Item
 
Technical standard
 
Classic value
Particle size D50 um
 
1.0~2.0
 
1.300
Tap density g/cm3
 
≥0.7
 
0.8
Compaction density g/cm3
 
≥2.2
 
2.4
Specific surface area m2/g
 
12.022.0
 
17.5
carbon content
%
 
1.52.5
 
1.67
Specific capacity mAh/g (0.1C)
 
≥ 155
 
157
 
First discharge efficiency
%
 
 
≥ 90%
 
 
92.5
 
Room Temperature Conductivity (S/cm)
 
 
1×10-4
 
 
2.2×10-4
SALES AND SERVICE NETWORK
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
Successful Project
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
Project in Thailand
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
Project in Bolivia
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
Project in UK
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
SIMILAR PRODUCTS
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material
FAQ
Carbon-Coated Sodium Vanadium Phosphate Na3V2 (PO4) 3 Powder as Sodium Ion Batteries Cathode Material

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