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Lithium hexafluorophosphate Cas:21324-40-3 white powder

Short Description:

Catalog Number: XD90813
Cas: 21324-40-3
Molecular Formula: F6LiP
Molecular Weight: 151.91
Availability: In Stock
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Prepack: 5g USD5
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Product Detail

Product Tags

Catalog Number XD90813
Product Name       Lithium hexafluorophosphate

CAS

21324-40-3

Molecular Formula

F6LiP

Molecular Weight

151.91
Storage Details Room Temperature
Harmonized Tariff Code 28269020

 

Product Specification

Appearance white powder
Assay 99%
Density 1.5
Melting point 200℃ (dec.)
Flash point 25 °C
PSA 13.59000
logP 3.38240

 

Hydrogenated carbon nanomaterials exhibit many advantages in both mechanical and electrochemical properties, and thus have a wide range of potential applications. However, methods to control the hydrogenation and the effect of hydrogenation on the microstructure and properties of the produced nanomaterials have rarely been studied. Here we report the synthesis of hydrogenated carbon nanospheres (HCNSs) with different degrees of hydrogenation by a facile solvothermal method, in which C2H3Cl3/C2H4Cl2 was used as the carbon precursor and potassium as the reductant. The hydrogenation level of the obtained nanospheres depends on the reaction temperature and higher temperature leads to lower hydrogenation due to the fact that the breaking of C-H bonds requires more external energy. The reaction temperature also affects the diameter of the HCNSs and larger spheres are produced at higher temperatures. More importantly, the size and the degree of hydrogenation are both critical factors for dete rmining the electrochemical properties of the HCNSs. The nanospheres synthesized at 100 °C have a smaller size and a higher hydrogenation degree and show a capacity of 821 mA h g(-1) after 50 cycles, which is significantly higher than that of the HCNSs produced at 150 °C (450 mA h g(-1)). Our study opens a possible way for obtaining high-performance anode materials for rechargeable lithium-ion batteries.


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    Lithium hexafluorophosphate Cas:21324-40-3 white powder