Description
Product Name: Tellurium Hexafluoride TeF6
CAS :7783-80-4
Purity: 2N5~4N
Product specifications: 4L/8L/10L/40L/47L/50L
Product form: Tellurium Hexafluoride TeF6
Main use: applications in semiconductor devices and solar cells.
Availability : In Stock
What is Tellurium Hexafluoride (TeF6) ?
Tellurium hexafluoride (TeF6) is a colorless, highly toxic gas with a repulsive odor, which reacts with water to form toxic vapors and can cause severe health issues, including pulmonary edema, by inhalation or skin absorption. It is heavier than air, posing a sinking hazard, and can explode if containers are heated. TeF6 has applications in semiconductor devices and solar cells.
Certificate of Analysis
Component | Unit | Specification |
TeF6 | % | ≥ 99.99 % |
N2 | ppm | ≤ 10 |
O2+Ar | ppm | ≤ 5 |
CO2 | ppm | ≤ 5 |
CO | ppm | ≤ 10 |
CF4 | ppm | ≤ 10 |
SF6 | ppm | ≤ 10 |
HF | ppm | ≤ 50 |
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Our Tellurium Hexafluoride (TeF6) ranging from high to low levels serve Semiconductor Manufacturing and other Chemical plants, gaining their trust ranging from its quality / price / delivery. We know each parameters of product, to solve their questions on site , and pursuit to continue serving clients better.
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What are applications of Tellurium Hexafluoride (TeF6) ?
Tellurium Hexafluoride (TeF6)is primarily used in the semiconductor industry as a precursor for materials in electronics and optical devices. It also serves as a fluorinating agent in specialized chemical synthesis, a subject of study in plasma and laser research, and in material science for surface treatments. A significant, albeit less common, application is in the production of radioisotopes for medical applications.
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Semiconductor Industry:TeF6 is used as a precursor to create tellurium-containing compounds for use in advanced microelectronics.
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Fluorinating Agent:Its reactivity allows it to introduce fluorine atoms into other compounds, a process valuable in organic and inorganic synthesis.
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Chemical Synthesis:TeF6 is used in the creation of coordination compounds and can modify the properties of other substances through selective fluorination.
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Material Science and Surface Modification:TeF6 can be used to alter the surfaces of metals and alloys to improve their corrosion resistance or modify electrical properties.
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Radioisotope Production:TeF6 is investigated and utilized in the production of radioisotopes, such as ¹²⁴I-rituximab, which are essential for medical diagnoses and treatments.
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Plasma and Laser Research:Due to its unique properties, TeF6 is studied for its role in plasma chemistry and laser-assisted reactions.
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Analytical Techniques:High-resolution infrared and Raman spectroscopy are used to study its vibrational energy levels, providing insights into its structure and bonding.
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