Formation of Lithium Oxide
4Li + O2 → 2Li2O
نظرة عامة
Lithium metal reacts with oxygen to form lithium oxide. Unlike the heavier alkali metals, lithium primarily forms the normal oxide rather than the peroxide or superoxide. This reaction occurs readily at room temperature, causing lithium to tarnish in air.
المشاركون
مثال من الحياة اليومية
Lithium batteries can react violently if the lithium metal inside is exposed to air, partially due to this oxidation reaction.
الأهمية الصناعية
Lithium oxide is used in ceramics, glass manufacturing, and as a flux. Understanding lithium oxidation is crucial for lithium battery safety and recycling.
الخصائص
- النوع
- Synthesis
- قابل للعكس
- لا
- الطاقة
- طارد للحرارة
- ΔH
- -1198,4 kJ/mol
التفاعلات ذات الصلة
Formation of Nitrogen Dioxide
Formation of Potassium Chloride
Formation of Sodium Bicarbonate
Formation of Sodium Peroxide
Formation of Silicon Dioxide
Formation of Tungsten Carbide
Formation of Copper(II) Sulfide
Formation of Sulfur Dioxide
Formation of Hydrogen Sulfide
Formation of Carbon Monoxide
Frequently Asked Questions
What is the equation for Formation of Lithium Oxide?
The balanced equation is: 4Li + O₂ → 2Li₂O.
What type of reaction is Formation of Lithium Oxide?
Formation of Lithium Oxide is a synthesis reaction.
Is Formation of Lithium Oxide exothermic or endothermic?
Formation of Lithium Oxide is exothermic (releases energy). The enthalpy change (ΔH) is -1198.4 kJ/mol.