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Merck
CN

221007

醋酸锰 四水合物

≥99%

别名:

二乙酸锰四水合物, 乙酸锰

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关于此项目

线性分子式:
(CH3COO)2Mn · 4H2O
化学文摘社编号:
分子量:
245.09
UNSPSC Code:
12352103
NACRES:
NA.23
PubChem Substance ID:
EC Number:
211-334-3
Beilstein/REAXYS Number:
3730728
MDL number:
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产品名称

醋酸锰 四水合物, ≥99%

InChI key

CESXSDZNZGSWSP-UHFFFAOYSA-L

InChI

1S/2C2H4O2.Mn.4H2O/c2*1-2(3)4;;;;;/h2*1H3,(H,3,4);;4*1H2/q;;+2;;;;/p-2

SMILES string

[H]O[H].[H]O[H].[H]O[H].[H]O[H].CC(=O)O[Mn]OC(C)=O

assay

≥99%

form

crystals

reaction suitability

core: manganese

mp

>300 °C (lit.)

density

1.589 g/mL at 25 °C (lit.)

Quality Level

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Application

四水合乙酸锰(II)可用作:     
  • 合成羧酸锰的起始原料,羧酸锰可用于化学气相沉积(CVD)法制备氧化锰薄膜。     
  • 化学气相冷凝(CVC)法合成锰-TiO2复合材料的前驱体。这些复合材料可用于低温氧化NO。     
  • 制备NCM(LiNi1/3Co1/3Mn1/3O2)粉末的前驱体,该粉末可用作锂离子电池的正极材料。     
  • 溶胶-凝胶法在Au衬底上合成LiMn2O4(LMO)薄膜的起始原料。

General description

四水合乙酸锰(II)是一种离子化合物,可溶于水和极性溶剂。它通常用作化学气相沉积工艺中制造锂离子电池正极材料的前驱体。也可用作溶胶-凝胶前驱体,合成氧化锰基催化剂和其他功能材料。此外,四水合乙酸锰(II)还用作染色中的媒染剂、油漆和清漆的催干剂以及氧化催化剂。可用于生产高纯度二氧化锰、氧化锰水合物和其他含锰化合物。

pictograms

Health hazard

signalword

Warning

hcodes

Hazard Classifications

Aquatic Chronic 3 - STOT RE 2 Inhalation

target_organs

Brain

存储类别

11 - Combustible Solids

wgk

WGK 2

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

dust mask type N95 (US), Eyeshields, Gloves


历史批次信息供参考:

分析证书(COA)

Lot/Batch Number

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Carbon coating nanostructured-LiNi1/3Co1/3Mn1/3O2 cathode material synthesized by chemical vapor deposition method for high performance lithium-ion batteries
Qian Hou, et al.
Journal of alloys and compounds, 747, 796-802 (2018)
Cobalt and manganese carboxylates for metal oxide thin film deposition by applying the atmospheric pressure combustion chemical vapour deposition process
Kretzschmar,et al.
Royal Society of Chemistry Advances, 8(28), 15632-15640 (2018)
Low-temperature NO oxidation over Mn/TiO2 nanocomposite synthesized by chemical vapor condensation: Effects of Mn precursor on the surface Mn species
Eunseuk Park, et al.
Microporous and Mesoporous Materials : The Official Journal of the International Zeolite Association, 163, 96-101 (2012)
Renfa Liu et al.
Theranostics, 5(10), 1144-1153 (2015-08-19)
The integration of diagnostic and therapeutic functionalities into one nanoplatform shows great promise in cancer therapy. In this research, manganese (II) chelate functionalized copper sulfide nanoparticles were successfully prepared using a facile hydrothermal method. The obtained ultrasmall nanoparticles exhibit excellent
Kyu-Nam Jung et al.
Scientific reports, 5, 7665-7665 (2015-01-08)
Rechargeable metal-air batteries are considered a promising energy storage solution owing to their high theoretical energy density. The major obstacles to realising this technology include the slow kinetics of oxygen reduction and evolution on the cathode (air electrode) upon battery

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