Mercury Sulphide Powder
Product: Mercury Sulphide Powder (HgS, Purity: 99%, APS: 40-50µm)
Quality Control: Each lot of NANOSHEL Mercury Sulphide Powder was tested successfully.
|Product Name||Mercury Sulphide Powder|
|Molecular Weight||232.66 g/mol||Confirm|
|Melting Point||580 °C||Confirm|
|Conclusion||The specifications Confirm with enterprise standard|
|Main Inspect Verifier||Manager QC|
TYPICAL CHEMICAL ANALYSIS
Dr. Marcus Tägtmeyer (International Medical and Technological University, Dar es Salaam, Tanzania)
Mercuric sulphide (HgS) is widely used in acousto‐ optical materials, infrared sensing and photoelectronic applications. Two different HgS crystal structures, α‐HgS (cinnabar, trigonal type, hexagonal) and β‐HgS (metacinnabar, zinc‐blende type, cubic) have been intensively explored. Metacinnabar, a strong topological insulator, is a unique material, which can be used for low‐power consumption electronic devices.
Dr. Ms Jane Li (National Penghu University of Science and Technology, Magong, Penghu, Republic of China)
As particle sizes decrease to a nanometre scale, quantum confinement effects and large surface to volume ratios make these applications even more significant. In particular, nano‐sized HgS has a potential use in solid state solar cells and photoelectrochemical cells. Thus, developments in its synthesis methods are of continuing interest. Nanoparticles (NPs) are naturally ubiquitous in the environment and are formed by processes that have occurred for millions of years.
Dr. Willem-Jan de Kleijn Ph.D (Luleå University of Technology, Luleå, Sweden)
In the chemical and petrochemical industries, products worth billions of dollars are generated every year through processes that use oxide and metal/oxide catalysts. For the control of environmental pollution, catalysts or sorbents that contain oxides are employed to remove the CO, NOx, and SOx species formed during the combustion of fossil-derived fuels.
Dr. JKF Gojukai PhD (Kaiserslautern University of Technology, Kaiserslautern, Rhineland-Palatinate, Germany)
Furthermore, the most active areas of the semiconductor industry involve the use of oxides. Thus, most of the chips used in computers contain an oxide component. Till now, there are still many potential applications of materials under continuous investigation and new synthesis methods being developed.
Dr. Huang Fu Ph.D (Maebashi Institute of Technology, Maebashi, Gunma, Japan)
Mercury is used as a target in spallation sources, research devices in nuclear physics to produce neutrons and neutron beams. It is estimated that during the lifetime of a spallation target facility (40 y) about 30 – 40 t of radioactively contaminated and activated mercury are produced. Different from mercury-containing mixed waste from nuclear facilities, waste mercury form spallation targets also contains radioactive mercury isotopes so that a complete separation of radionuclides from liquid mercury is not feasible.
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