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1mm Lanthanum Sputtering Target

1mm Lanthanum Sputtering Target

SKU:LAN-3100f6

High-purity 1mm Lanthanum Sputtering Target for precise thin film deposition in diverse applications.

Regular price $349.99
Regular price Sale price $349.99
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1mm Lanthanum Sputtering Target

1mm Lanthanum Sputtering Target

$349.99

Quantity: 1

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1mm Lanthanum Sputtering Target

1mm Lanthanum Sputtering Target

$349.99

Quantity: 1

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The 1mm Thickness Lanthanum Sputtering Target is a high-purity material designed for sputtering processes, ensuring efficient atom removal for thin film deposition. With a 99.0% purity level and precise thickness tolerance, this target guarantees consistent and reliable performance. Lanthanum's unique properties make it ideal for optical glass manufacturing, superconductivity applications, and even as a biological tracer. Tailored for both research institutions and industrial facilities, this sputtering target meets stringent quality standards for enhanced productivity.

Product Specifications

Atomic Properties Atomic Number
57
Atomic Properties Atomic Radius Goldschmidt
0
Atomic Properties Atomic Weight
138.90550 amu
Atomic Properties Crystal Structure
Hexagonal Close Packed/Face Cantered Cubic
Atomic Properties Electronic Structure
Xe5d16s2
Atomic Properties Ionization Potential Number 1
5.58 eV
Atomic Properties Ionization Potential Number 2
11.06 eV
Atomic Properties Ionization Potential Number 3
19.18 eV
Atomic Properties Natural Isotope Distribution Mass Number 138
0.09 %
Atomic Properties Natural Isotope Distribution Mass Number 139
99.91 %
Atomic Properties Photo Electric Work Function
3.50 eV
Atomic Properties Thermal Neutron Absorption Cross Section
8.9000 Barns
Atomic Properties Valences Shown
3
Electrical Properties Electrical Resistivity At 20 Degree Celsiu
57 µΩ·cm
Electrical Properties Superconductivity Critical Temperature
4.8800 K
Electrical Properties Temperature Coefficient At 0 To 100 Degree
0.00218 k-1
Material Material
LanthanumDiscovered in 1839 by C.G. Mosander in Stockholm, Sweden. Lanthanum is a soft, ductile, white metal which oxidises rapidly in air. It is one of the most reactive of the lanthanide group of elements, reacting with water to produce hydrogen gas. It has an abundance in the earth's crust of 32 ppm. At very low temperatures, lanthanum is super conducting (at 6K). It is used to manufacture special grades of optical glass which have specific refractive properties. Lanthanum can also be used in flints, and La³⁺ is used as a biological tracer for Ca²⁺. Radioactive isotopes of lanthanum have been tested for the treatment of cancer.
Mechanical Properties Bulk Modulus Polycrystalline
24.8 GPa
Mechanical Properties Hardness Vickers Polycrystalline
40 Kgf mm-2
Mechanical Properties Material Condition
Polycrystalline
Mechanical Properties Poissons Ratio Polycrystalline
0.280
Mechanical Properties Tensile Modulus Polycrystalline
37.90 GPa
Mechanical Properties Tensile Strength Polycrystalline
131.00 MPa
Mechanical Properties Yield Strength Polycrystalline
124.0 MPa
Note Note
Made to order for delivery in about 4-5 weeks. Other sizes also available.
Physical Properties Boiling Point
3457 ºC
Physical Properties Density At 20 Degree Celsius C Temperature
6.174 g·cm-3
Specifications Diameter
50 to 75 mm
Specifications Purity
99.0 %
Specifications Thickness
1 mm
Thermal Properties Coefficient Of Thermal Expansion At 0 To 100
4.900 x10-6 K-1
Thermal Properties Latent Heat Of Evaporation
2897 Jg-1
Thermal Properties Latent Heat Of Fusion
60.20 Jg-1
Thermal Properties Melting Point
921.00 ºC
Thermal Properties Specific Heat At 25 Degree Celsius C Temperat
197.0 J K-1 kg-1
Thermal Properties Thermal Conductivity At 0 To 100 Degree Celsi
13.40 W m-1K-1
Tolerances Disc Diameter Tolerance
0.5 mm
Tolerances Thickness Tolerance
0.5 mm
Type Type
MetalA metal is generally considered to be a pure element which readily forms cations. Metals are characterized by their opacity and high thermal and electrical conductivities, the latter properties resulting from the delocalized and mobile nature of the electrons over the crystal structure.