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Merck
CN

553913

硼化镁

powder, −100 mesh, ≥99% trace metals basis

别名:

二硼化镁

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关于此项目

线性分子式:
MgB2
化学文摘社编号:
分子量:
45.93
NACRES:
NA.23
PubChem Substance ID:
UNSPSC Code:
12352300
EC Number:
234-501-2
MDL number:
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InChI key

DRCUCSCGQLIENV-UHFFFAOYSA-N

InChI

1S/B2.Mg/c1-2;/q+2;-2

SMILES string

[Mg]1B=B1

assay

≥99% trace metals basis

form

powder

particle size

−100 mesh

Quality Level

General description

硼化镁 (MgB2) 粉末是一种超导材料,其临界转变温度 (Tc) = 39K。它可用于储氢、高能燃料和高场超导体等多种应用。

Application

Features and Benefits

具有独特性质的超导材料。

存储类别

11 - Combustible Solids

wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

Eyeshields, Gloves, type N95 (US)


历史批次信息供参考:

分析证书(COA)

Lot/Batch Number

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Peter Beckett et al.
The Journal of chemical physics, 137(11), 114201-114201 (2012-09-25)
Static and magic-angle spinning (11)B nuclear magnetic resonance (NMR) data at 4.7 T and 8.5 T have been obtained under cryogenic conditions on a diluted sample of magnesium diboride powder in the normal and superconducting state. The data provide accurate
Tailored materials for high-performance MgB(2) wire.
Jung Ho Kim et al.
Advanced materials (Deerfield Beach, Fla.), 23(42), 4942-4946 (2011-10-01)
D Eyidi et al.
Micron (Oxford, England : 1993), 34(2), 85-96 (2003-06-13)
Superconducting MgB(2) ceramics were prepared and yield superconducting transition temperatures of about 39 K. For covering the various length scales on which inhomogeneities appear in MgB(2), electron-probe micro-analysis (EPMA) and analytical transmission electron microscopy (TEM) were applied for a phase
Mingjian Fan et al.
Advanced healthcare materials, 8(13), e1900157-e1900157 (2019-04-11)
The hydrogen molecule is recognized as a high potential to attenuate toxic side effects of chemotherapy and also enhance chemotherapeutic efficacy, and the development of a novel hydrogen-generating prodrug for facile, safe, and efficient hydrogen delivery is vitally important for
Zongqing Ma et al.
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).

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