Potassium heptafluoroniobate(V)

99.5%

Reagent Code: #87948
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CAS Number 16924-03-1

science Other reagents with same CAS 16924-03-1

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 304.10 g/mol
Formula K₂NbF₇
badge Registry Numbers
MDL Number MFCD0004236
inventory_2 Storage & Handling
Storage Room temperature, airtight, dry

description Product Description

Used primarily in the production of specialized ceramics and glass, it acts as a flux to lower melting points and improve material properties. In the electronics industry, it is employed in the fabrication of niobium-based compounds for capacitors and superconductors. Additionally, it serves as a catalyst in certain organic synthesis reactions, enhancing efficiency and selectivity. Its unique properties also make it valuable in research for developing advanced materials with specific optical or electrical characteristics.

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Test Parameter Specification
Appearance Powder
Purity 99-100
Infrared Spectrum Conforms to Structure

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Size Availability Unit Price Quantity
inventory 5g
10-20 days ฿4,800.00
inventory 25g
10-20 days ฿21,650.00

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Potassium heptafluoroniobate(V)
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Used primarily in the production of specialized ceramics and glass, it acts as a flux to lower melting points and improve material properties. In the electronics industry, it is employed in the fabrication of niobium-based compounds for capacitors and superconductors. Additionally, it serves as a catalyst in certain organic synthesis reactions, enhancing efficiency and selectivity. Its unique properties also make it valuable in research for developing advanced materials with specific optical or electrica

Used primarily in the production of specialized ceramics and glass, it acts as a flux to lower melting points and improve material properties. In the electronics industry, it is employed in the fabrication of niobium-based compounds for capacitors and superconductors. Additionally, it serves as a catalyst in certain organic synthesis reactions, enhancing efficiency and selectivity. Its unique properties also make it valuable in research for developing advanced materials with specific optical or electrical characteristics.

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