Lanthanum chromite

99.5% (REO)

Reagent Code: #73532
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CAS Number 12017-94-6

science Other reagents with same CAS 12017-94-6

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 238.9 g/mol
Formula LaCrO₃
badge Registry Numbers
MDL Number MFCD00053990
thermostat Physical Properties
Melting Point 2450°C
inventory_2 Storage & Handling
Density 5.6 g/cm³
Storage room temperature

description Product Description

Lanthanum chromite is widely used in high-temperature applications due to its excellent thermal stability and electrical conductivity. It is commonly employed as a material for solid oxide fuel cell (SOFC) interconnects, where it facilitates the efficient transfer of electrons between cells while withstanding extreme operating temperatures. Additionally, its resistance to oxidation and corrosion makes it suitable for use in thermoelectric devices and as a coating for components in aerospace and power generation industries. Its ability to maintain structural integrity under harsh conditions also makes it valuable in sensors and heating elements for industrial furnaces.

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Test Parameter Specification
Appearance Powder
Purity (REO)(%) 99.45-100
XRD Conforms to Structure

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inventory 5g
10-20 days ฿2,430.00

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Lanthanum chromite
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Lanthanum chromite is widely used in high-temperature applications due to its excellent thermal stability and electrical conductivity. It is commonly employed as a material for solid oxide fuel cell (SOFC) interconnects, where it facilitates the efficient transfer of electrons between cells while withstanding extreme operating temperatures. Additionally, its resistance to oxidation and corrosion makes it suitable for use in thermoelectric devices and as a coating for components in aerospace and power gen

Lanthanum chromite is widely used in high-temperature applications due to its excellent thermal stability and electrical conductivity. It is commonly employed as a material for solid oxide fuel cell (SOFC) interconnects, where it facilitates the efficient transfer of electrons between cells while withstanding extreme operating temperatures. Additionally, its resistance to oxidation and corrosion makes it suitable for use in thermoelectric devices and as a coating for components in aerospace and power generation industries. Its ability to maintain structural integrity under harsh conditions also makes it valuable in sensors and heating elements for industrial furnaces.

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