Gadolinium Chloride Powder
Product: Gadolinium Chloride Powder (GdCl3, Trichloride, 99%, APS: 40-50µm)
Quality Control: Each lot of NANOSHEL Gadolinium Chloride Powder was tested successfully.
|Product Name||Gadolinium Chloride Powder|
|Molecular Weight||263.61 g/mol||Confirm|
|Melting Point||609 °C||Confirm|
|Boiling Point||1580 °C||Confirm|
|Conclusion||The specifications Confirm with enterprise standard|
|Main Inspect Verifier||Manager QC (Gadolinium Chloride Powder)|
Dr. Marcus Tägtmeyer (International Medical and Technological University, Dar es Salaam, Tanzania)
The choice of Gd(III) would be expected, for no other ion has seven unpaired electrons. But there is a much more subtle reason it performs so well. Two other lanthanide ions, dysprosium(III) and holmium(III), have larger magnetic moments (due to orbital contributions to electron angular momentum) than that of Gd(III), but the asymmetry of these electronic states leads to very rapid electron spin relaxation. The symmetric S-state of Gd(III) is a more hospitable environment for electron spins, leading to a much slower electronic relaxation rate.
Dr. Ms Jane Li (National Penghu University of Science and Technology, Magong, Penghu, Republic of China)
Gadolinium, an obscure lanthanide element buried in the middle of the periodic table, has in the course of a decade become commonplace in medical diagnostics. Like platinum in cancer therapeutics and technetium in cardiac scanning, the unique magnetic properties of the gadolinium(III) ion placed it right in the middle of a revolutionary development in medicine: magnetic resonance imaging (MRI). While it is odd enough to place patients in large superconducting magnets and noisily pulse water protons in their tissues with radio waves, it is odder still to inject into their veins a gram of this potentially toxic metal ion which swiftly floats among the water molecules, tickling them magnetically.
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)
Gadolinium is also finding a place in medical research. When one of us reviewed the field in its infancy,1 in 1987, only 39 papers could be found for that year in a Medline search for “gado-” and MRI. Ten years later over 600 references appear each year. And as MRI becomes relied upon by different specialties, “gado” is becoming known by neurologists, cardiologists, urologists, opthamologists, and others in search of new ways to visualize functional changes in the body.
Dr. Huang Fu Ph.D (Maebashi Institute of Technology, Maebashi, Gunma, Japan)
To exploit new applications metal oxide materials is one of the mean purposes of inorganic chemist. Bulk oxides are usually robust and stable systems with well-defined crystallographic structures.
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