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High Temperature Superconductor Thulium Tm 7440-30-4 Thulium Element

High Temperature Superconductor Thulium Tm 7440-30-4 Thulium Element

High Temperature Superconductor Thulium

Superconductor Thulium Tm

7440-30-4 Thulium Element

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Product Details
CAS #:
7440-30-4
Molecular Formula:
Tm
EC No.:
231-140-2
Purity:
99.9-99.99%
Molecular Weight:
168.93
Appearance:
Silvery
Melting Point:
1545°C
Boiling Point:
1950°C
Density:
9321 Kg/m³
Electrical Resistivity:
79.0 Microhm-cm @ 25°C
Electronegativity:
1.2 Paulings
Heat Of Fusion:
4.40 Cal/gm Mole
Heat Of Vaporization:
1947 K-Cal/gm Atom @ 1947°C
Poisson's Ratio:
0.213
Specific Heat:
0.0382 Cal/g/K @ 25°C
Tensile Strength:
60 MPa
Thermal Conductivity:
0.169 W/cm/K @ 298.2 K
Thermal Expansion:
13.3 µm/(m·K) (rt, Poly)
Vickers Hardness:
520 MPa
Young's Modulus:
74.0 GPa
Highlight:

High Temperature Superconductor Thulium

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Superconductor Thulium Tm

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7440-30-4 Thulium Element

Payment & Shipping Terms
Minimum Order Quantity
500g
Packaging Details
0.5-1 kilogram per bottle, 50 kilograms per drum, 500 kilograms per pallet
Delivery Time
45-60 Workdays
Payment Terms
T/T
Supply Ability
1000 kg
Product Description

Thulium (Tm): Nuclear Reactor Control Material, Activator for Phosphors, High-Temperature Superconductor

 

Thulium (Tm) is a silver-white metal with ductility and relatively soft texture. It has a melting point of 1545°C, a boiling point of 1950°C, and a density of 9.320 g/cm³. Thulium remains stable in air.

 

Applications

  1. Used as a control material in nuclear reactors.
  2. Can act as an activator for certain fluorescent materials.
  3. Also serves as a high-temperature superconducting material.

 

Product Series

Product

Product Code

Safety Data

Technical Data

Thulium 99.9%

ET-TmM-01

Thulium.pdf Thulium Metal 99.9.pdf

Thulium 99.99%

ET-TmM-02

Thulium Metal 99.99.pdf

 

Health and Safety Information

Signal Word Danger
Hazard Statements H228-H319-H335
Hazard Codes F, Xi
Precautionary Statements P210-P261-P305 + P351 + P338
Flash Point N/A
Risk Codes N/A
Safety Statements N/A
RTECS Number N/A
Transport Information NONH
WGK Germany 3
GHS Pictograms High Temperature Superconductor Thulium Tm 7440-30-4 Thulium Element 0High Temperature Superconductor Thulium Tm 7440-30-4 Thulium Element 1

 

 

Packaging Specifications

  • Standard packaging: 50 kg/drum, 500 kg/pallet, ton bags
  • Sample packaging: 500 g/bag, 1 kg/bottle

 

Production of Thulium Metal

After separating thulium from other rare earth elements via ion exchange or solvent extraction techniques, metallic thulium can be prepared through metallothermic reduction. Unlike calcium reduction of rare earth chlorides, lithium reduction occurs in the vapor phase.

The lithium reduction reactor consists of two heating zones, with the reduction and distillation processes carried out in the same equipment. Anhydrous thulium chloride (TmCl₃) is placed in the upper titanium crucible (also the TmCl₃ distillation chamber), while the reducing agent, lithium metal, is placed in the lower crucible. The stainless steel reaction vessel is then evacuated to 7 Pa before heating begins.

When the temperature reaches 1000°C, it is maintained for a period to allow thorough reaction between TmCl₃ vapor and lithium vapor. The resulting solid thulium metal particles collect in the lower crucible. After completion of the reduction, only the lower crucible is heated to distill LiCl into the upper crucible. The entire reduction process typically takes around 10 hours.

To obtain high-purity thulium metal, the reducing agent lithium must be 99.97% pure, and twice-distilled anhydrous TmCl₃ is used.

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