跳转至内容
Merck
CN

725129

锂锰氧化物

greener alternative

spinel, powder, <0.5 μm particle size (BET), ≥98% trace metals basis

别名:

锂锰(III,IV)氧化物, LMO

登录 查看组织和合同定价。

选择尺寸


关于此项目

线性分子式:
LiMn2O4
化学文摘社编号:
分子量:
180.81
NACRES:
NA.23
PubChem Substance ID:
UNSPSC Code:
26111700
MDL number:
技术服务
需要帮助?我们经验丰富的科学家团队随时乐意为您服务。
让我们为您提供帮助
技术服务
需要帮助?我们经验丰富的科学家团队随时乐意为您服务。
让我们为您提供帮助

产品名称

锂锰氧化物, spinel, powder, <0.5 μm particle size (BET), ≥98% trace metals basis

InChI

1S/Li.2Mn.4O/q+1;;;;;;-1

SMILES string

[Li+].[O-][Mn]=O.O=[Mn]=O

InChI key

VLXXBCXTUVRROQ-UHFFFAOYSA-N

grade

battery grade

assay

≥98% trace metals basis

form

powder

mol wt

Mw 180.81 g/mol

composition

LiMn2O4

greener alternative product characteristics

Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

particle size

<0.5 μm (BET)

mp

>400 °C (lit.)
400 °C

density

4.1 g/cm3 at 25 °C

application(s)

battery manufacturing

greener alternative category

Quality Level

正在寻找类似产品? 访问 产品对比指南

Application

LMO尖晶石粉是一种高性价比的、热稳定的负极材料。它具有三维骨架结构,可用于制造混合动力电动汽车(HEV)的锂离子电池。

Features and Benefits

用于高能量密度锂离子可充电电池的正极材料;亚微米粒径可增加电极表面积。所列出的组成物可制备具有增强的性能和耐久性的电池电极。

锂电池,电极设计和制造的材料

General description

我们致力于为您提供更环保的替代产品,以符合“绿色化学的12项原则”的一项或多项原则要求。该产品为增强型,提高了能源效率。点击此处,查看更多详情。
锂锰氧化物 (LMO) 是一类电极材料,可用于制造锂离子电池。锂离子电池由具有充放电循环的阳极、阴极和电解液组成。这些材料能形成更环保的可持续性电能储存电池。

Legal Information

Engi-Mat公司产品。

存储类别

11 - Combustible Solids

wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable


历史批次信息供参考:

分析证书(COA)

Lot/Batch Number

没有发现合适的版本?

如果您需要特殊版本,可通过批号或批次号查找具体证书。

已有该产品?

在文件库中查找您最近购买产品的文档。

访问文档库

Lattice vibrations of materials for lithium rechargeable batteries I. Lithium manganese oxide spinel
Julien CM and Massot M
Materials Science and Engineering, B, 97(3), 217-230 (2003)
Ye, S. H.; Lu, J. Y.; Gao, X. P.; Wu, F.; Song, D. Y.
Electrochimica Acta, 49, 1623-1623 (2004)
Nicole L Green et al.
Soft matter, 11(27), 5523-5530 (2015-06-13)
Oil migration in chocolate and chocolate-based confections leads to undesirable visual and textural changes. Establishing ways to slow this unavoidable process would increase shelf life and reduce consumer rejection. Diffusion is most often credited as the main pathway by which
Improved lithium manganese oxide spinel/graphite Li-ion cells for high-power applications
Amine K, et al.
Journal of Power Sources, 129(1), 14-19 (2004)
Wu, H. M.; Tu, J. P.; Yuan, Y. F.; Li, Y.;
Physica B: Condensed Matter, 369, 221-221 (2005)

商品

Solid oxide fuel cells and electrolyzers show potential for chemical-to-electrical energy conversion, despite early development stages.

Ionic liquid electrolytes explored for rechargeable batteries' advancement; future IL development discussed.

Professor Qiao's review explores stable microstructures for lithium metal fluoride batteries, advancing energy storage technologies.

Nanomaterials for Energy Storage in Lithium-ion Battery Applications

查看所有结果

我们的科学家团队拥有各种研究领域经验,包括生命科学、材料科学、化学合成、色谱、分析及许多其他领域.

联系客户支持