553913
Magnesium boride
powder, −100 mesh, ≥99% trace metals basis
Sinónimos:
Magnesium diboride
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About This Item
Productos recomendados
Quality Level
assay
≥99% trace metals basis
form
powder
particle size
−100 mesh
SMILES string
[Mg]1B=B1
InChI
1S/B2.Mg/c1-2;/q+2;-2
InChI key
DRCUCSCGQLIENV-UHFFFAOYSA-N
General description
Magnesium boride (MgB2) powder is a superconductive material which has a critical temperature (Tc) = 39K. It can be used for a variety of applications such as hydrogen storage, high energy fuel and high field superconductors.
Application
- Combustion characteristics of magnesium borides and their agglomerated particles: This research examines the combustion properties of magnesium borides, comparing them to boron to understand their potential in energetic materials (Y Guo, X Zhou, W Zhang, L Deng, Y Du, S Cheng, 2019).
- Review on magnesium diboride (MgB2) as excellent superconductor: Discusses the superconducting properties of magnesium diboride and the effects of different production techniques on these properties, critical for applications in superconducting technologies (M Rafieazad, O Balci, S Acar, M Somer, 2017).
- Novel magnesium borides and their superconductivity: Investigates new forms of magnesium borides under high pressure, exploring their potential superconducting properties, which could lead to new advancements in materials science (MMD Esfahani, Q Zhu, H Dong, AR Oganov, 2017).
Features and Benefits
Superconduction material with unique properties.
Storage Class
11 - Combustible Solids
wgk_germany
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves, type N95 (US)
Certificados de análisis (COA)
Busque Certificados de análisis (COA) introduciendo el número de lote del producto. Los números de lote se encuentran en la etiqueta del producto después de las palabras «Lot» o «Batch»
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Magnesium boride sintered as high-energy fuel
Journal of Thermal Analysis and Calorimetry, 113(2), 787-791 (2013)
Nanoscale, 4(6), 2060-2065 (2012-02-22)
MgB(2) superconductors with unique microstructures were rapidly fabricated at low temperatures, and exhibited significantly improved critical current density (J(c)). According to the microstructure observations, the prepared samples consisted of lamellar nano MgB(2) grains with many embedded nanoimpurities (about 10 nm).
Direct hydrogenation of magnesium boride to magnesium borohydride: demonstration of> 11 weight percent reversible hydrogen storage
Chemical Communications (Cambridge, England), 46(3), 421-423 (2010)
[Toxicokinetics of borates and borides after a single exposure].
Gigiena i sanitariia, (9-10)(9-10), 61-64 (1992-09-01)
Nature communications, 3, 619-619 (2012-01-12)
The energy gap is the most fundamental property of a superconductor. MgB(2), a superconductor discovered in 2001, exhibits two different superconducting gaps caused by the different electron-phonon interactions in two weakly interacting bands. Theoretical calculations predict that the gap values
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