推荐产品
方案
99.9%
表单
foil
制造商/商品名称
Goodfellow 471-598-26
电阻率
9.446 μΩ-cm, 20°C
尺寸 × 厚度
25 x 100 mm × 0.6 mm
沸点
1342 °C (lit.)
mp
180 °C (lit.)
密度
0.534 g/mL at 25 °C (lit.)
SMILES字符串
[Li]
InChI
1S/Li
InChI key
WHXSMMKQMYFTQS-UHFFFAOYSA-N
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一般描述
Lithium (Li) is a highly reactive alkali metal known for its lightweight and electrochemical properties. This product is available in foil form and has a resistivity of 9.446 μΩ-cm at 20°C. With an assay of 99.9%, lithium is characterized by its low melting point of 180 °C and a density of 0.534 g/mL at 25 °C. Lithium is extensively utilized in the production of rechargeable lithium-ion batteries, which power a wide range of electronic devices, including smartphones, laptops, and electric vehicles. Its lightweight nature and high energy density make it an ideal choice for energy storage applications. Additionally, lithium compounds are used in the manufacturing of ceramics, glass, and lubricating greases, enhancing their thermal and mechanical properties.
应用
- 锂离子电池回顾:本文回顾了锂离子电池在发展中的贡献,讨论了指导未来电池技术突破的启发性见解(J Xie, YC Lu, 2020)。
- 下一代可充电锂电池和锂离子电池的指南和趋势:本文讨论了商用锂离子电池的局限性,并探讨了下一代电池的发展方向(F Wu, J Maier, Y Yu, 2020)。
- 2030年锂离子电池前景展望:本文探讨了锂离子电池的未来,并讨论了改进这些和下一代电池技术的当前策略(CP Grey, DS Hall, 2020)。
- 锂卤水:整体视角:本研究提供了锂盐的整体视角,讨论了需求不断增长的关键锂技术(LA Munk, SA Hynek, DC Bradley, D Boutt, K Labay, 2016)。
法律信息
Goodfellow产品
警示用语:
Danger
危险声明
危险分类
Skin Corr. 1B - Water-react 1
补充剂危害
储存分类代码
4.3 - Hazardous materials which set free flammable gases upon contact with water
WGK
WGK 1
闪点(°F)
Not applicable
闪点(°C)
Not applicable
法规信息
新产品
P Sienaert et al.
Journal of affective disorders, 146(1), 15-33 (2012-09-05)
Throughout the past decades, several methods have been developed to achieve therapeutic lithium blood levels as quick and safe as possible. The present study will systematically review the methods developed and studied for lithium dose estimation or level prediction at
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Chemical communications (Cambridge, England), 47(47), 12578-12591 (2011-08-25)
Yolk/shell or 'rattle-typed' nanomaterials with nanoparticle cores inside hollow shells are interesting among the complex hollow nanostructures. Yolk/shell nanoparticles (YSNs) are promising functional nanomaterials for a variety of applications such as catalysis, delivery, lithium-ion batteries and biosensors due to their
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Aging has been associated with the accumulation of damages in molecules and organelles in cells, particularly mitochondria. The rate of damage accumulation is closely tied to the turnover of the affected cellular components. Perturbing mitochondrial turnover has been shown to
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