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InChI
1S/ClH.Na/h1H;/q;+1/p-1
SMILES string
[Na+].[Cl-]
InChI key
FAPWRFPIFSIZLT-UHFFFAOYSA-M
description
High purity Salts
assay
≥99.99% (trace metals analysis)
form
crystalline powder
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impurities
≤100 ppmtrace (metals basis)
pH
7
mp
801 °C
solubility
water: soluble 358 g/L at 20 °C
anion traces
nitrate (NO3-): ≤20 ppm, sulfate (SO42-): ≤20 ppm
cation traces
Al: ≤10 ppm, B: ≤10 ppm, Ba: ≤10 ppm, Ca: ≤10 ppm, Co: ≤10 ppm, Cr: ≤10 ppm, Cu: ≤10 ppm, Fe: ≤10 ppm, K: ≤10 ppm, Mn: ≤10 ppm, Ni: ≤10 ppm, Si: ≤10 ppm, Ti: ≤10 ppm, Zn: ≤10 ppm
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Quality Level
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General description
Application
Furthermore, various MAX phases and Lewis acid salts were employed in the preparation of MXenes using the molten salt synthesis method. For example, Ti3SiC2 MAX phase and CuCl2 were mixed in a stoichiometric molar ratio of 1:3, along with sodium chloride , anhydrous and Potassium chloride, anhydrous. The mixture was heated to 750 °C and held for 24 h in an argon atmosphere. After washing with deionized water, MXene/Cu mixed particles were obtained, followed by further cleaning with APS solution, deionized water, and alcohol. The resulting MXene powders ( MS-Ti3C2Tx) were dried under vacuum at room temperature for 24 h.
Our Sodium chloride which is anhydrous, with a purity of ≥99.99%, is an excellent choice for molten salt synthesis method. Its anhydrous properties and high purity make it highly suitable for thermal energy storage (TES) materials and heat transfer fluids (HTFs) for next-generation concentrating solar power (CSP) systems and molten salt reactors (MSR).
Storage Class
13 - Non Combustible Solids
flash_point_f
Not applicable
flash_point_c
Not applicable
Regulatory Information
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