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Merck
CN

L4533

Sigma-Aldrich

氢氧化锂 一水合物

BioXtra, 98.5-101.5% (titration)

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别名:
LiOH, LiOH.H2O, Lithium Hydroxide
线性分子式:
LiOH · H2O
CAS号:
分子量:
41.96
EC 号:
MDL编号:
UNSPSC代码:
12352303
PubChem化学物质编号:
NACRES:
NA.21

产品线

BioXtra

质量水平

检测方案

98.5-101.5% (titration)

杂质

≤0.0005% Phosphorus (P)
≤0.1% Insoluble matter

溶解性

H2O: 1 M, clear to slightly hazy, colorless

痕量阴离子

chloride (Cl-): ≤0.05%
sulfate (SO42-): ≤0.05%

痕量阳离子

Al: ≤0.0005%
Ca: ≤0.005%
Cu: ≤0.0005%
Fe: ≤0.0005%
K: ≤0.005%
Mg: ≤0.0005%
NH4+: ≤0.05%
Na: ≤0.01%
Pb: ≤0.001%
Zn: ≤0.0005%

SMILES字符串

[Li+].O.[OH-]

InChI

1S/Li.2H2O/h;2*1H2/q+1;;/p-1

InChI key

GLXDVVHUTZTUQK-UHFFFAOYSA-M

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应用


  • Deliquescent Lithium Sulfide Synthesis: Research on the air synthesis of deliquescent lithium sulfide demonstrates the versatility of lithium-based compounds, including lithium hydroxide monohydrate, in developing new materials for energy storage and battery technology (Yang et al., 2023).

  • Artificial Solid Electrolyte Interphase: Lithium hydroxide monohydrate′s potential utility in stabilizing lithium metal anodes at high rates of operation is indicated by studies on catalytic chemistry derived artificial solid electrolyte interphase, enhancing the safety and efficacy of lithium-ion batteries (Cheng et al., 2023).

  • Synthesis of Functionalized Disiloxanes: The study involving the synthesis of sulfur-containing functionalized disiloxanes showcases the broad applicability of innovative synthetic methods which could also include lithium hydroxide monohydrate to create materials with nonconventional properties, relevant in various chemical and industrial processes (Tang et al., 2023).

象形图

CorrosionExclamation mark

警示用语:

Danger

危险声明

危险分类

Acute Tox. 4 Oral - Eye Dam. 1 - Skin Corr. 1B

WGK

WGK 1

闪点(°F)

Not applicable

闪点(°C)

Not applicable

个人防护装备

Eyeshields, Faceshields, Gloves, type P3 (EN 143) respirator cartridges

法规信息

危险化学品

分析证书(COA)

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Jinyoung Jeong et al.
Advanced materials (Deerfield Beach, Fla.), 24(15), 1999-2003 (2012-03-21)
Highly water-soluble and color-tunable photoluminescent fullerene nanoparticles are synthesized by using tetraethylene glycol (TEG) and lithium hydroxide as a catalyst. The maximum PL emission changes depend on the contents of the remaining π-conjugation in oxidized C(60), which is partially covalently
Muhammad Ayoub et al.
Bioresource technology, 112, 308-312 (2012-03-23)
The synthesis of oxygenated fuel additives via solvent freebase-catalyzed etherification of glycerol is reported. The products of glycerol etherification arediglycerol (DG) and triglycerol (TG) with DG being the favorable one. The catalytic activity of different homogeneous alkali catalysts (LiOH, NaOH
Manuel Sturzbecher-Höhne et al.
Chemical research in toxicology, 21(12), 2257-2259 (2009-06-24)
We describe the preparation of aqueous solutions of LiONOO and NaONOO from (Me4N)ONOO. An aqueous solution of analytically pure, commercially available (Me4N)ONOO is applied to an Amberlyst 15 column at 4 degrees C, and the Me4N+ is rapidly (in 20
Cheng Guo et al.
Journal of the American Society for Mass Spectrometry, 23(7), 1191-1201 (2012-05-03)
Collision-induced dissociation (CID) of Li(+) adducts of three sets of compounds that contains an amide bond, including 2-(4, 6-dimethoxypyrimidin-2-ylsulfanyl)-N-phenylbenzamide, its derivatives and simpler structures was investigated by electrospray ionization tandem mass spectrometry (ESI-MS/MS). Observed fragment ions include those that reflect
Yan-Kai Tzeng et al.
Journal of mass spectrometry : JMS, 44(3), 375-383 (2008-10-30)
We report new approaches using alkali-hydroxide-doped matrices to facilitate structural characterization of neutral underivatized oligosaccharides by matrix-assisted laser desorption/ionization (MALDI) time-of-flight (TOF) MS. The approaches involved pretreatment of the analytes with NaOH or LiOH in aqueous solution, followed by mixing

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