Lithium hydride: essential compound for aerospace and battery industries, stands at the forefront of modern technology. Its lightweight nature and strong neutron shielding make it vital for advanced applications, including mobile nuclear reactors and space missions.
You can achieve high selectivity in organic reactions by understanding how L-selectride improves reaction selectivity in organic chemistry. This reagent stands out because of its large size and unique electronic properties, which contribute to exceptional chemoselectivity.
Lithium tri-tert-butoxyaluminum hydride stands out as a strong candidate for selective reductions in organic chemistry. This reagent fills the gap between very strong, nonselective agents and milder, more selective options.
Recent breakthroughs in lithium borohydride have redefined its potential as an energy storage system. Researchers have demonstrated that composite modifications, such as combining LiBH4 with Li3AlH6, significantly lower dehydrogenation temperatures while improving kinetics and hydrogen release.
Lithium aluminum hydride poses severe risks in the laboratory. Fires and explosions have resulted from improper handling, especially when moisture or oxygen contacts the material. Essential safety rules include strict avoidance of water, use of proper PPE, and storage under an inert atmosphere.
IntroductionLithium borohydride (LiBH4) is a highly valued compound in the field of chemistry and materials science due to its exceptional properties as a reducing agent and hydrogen storage material.
IntroductionIn the realm of chemical compounds, Lithium Borohydride and Sodium Borohydride stand out as significant reducing agents with diverse industrial applications.
IntroductionLithium borohydride is rapidly emerging as a crucial compound in various industrial applications, thanks to its unique chemical properties and the growing demand for efficient energy solutions.
IntroductionLithium borohydride is a versatile reagent in organic chemistry, known for its powerful reducing properties. Handling this compound requires a thorough understanding of its chemical behavior, safety protocols, and applications.
IntroductionLithium borohydride is a fascinating compound that has garnered significant attention in scientific research and industrial applications. As a powerful reducing agent, it plays a crucial role in organic synthesis and various industrial processes.
Product Description
Lithium deuteride is a white solid formed by the reaction of molten metal Li with deuterium gas. Stable at room temperature and pressure; It is a stable compound that can be transported and stored. Lithium deuteride has good storage, storage, and processing properties, making it a recyclable material. At room temperature, lithium deuteride can be stored in low-density liquids or in high-temperature sealed air.
Molecular formula | LiD | |
CAS No. | 13587-16-1 | |
Appearance | Solid | White or almost white powder |
Purity | Solid | ≥98% |
Specification | Solid | 100g/can; 500g/listen; 1000g/listen |
Advantages
Lithium deuteride is one of our company's star products and also our main product. The good storage capacity and stability of lithium deuteride make it widely used in many fields. Our company is committed to innovating and improving the preparation process of lithium deuteride, rapidly, economically, and efficiently preparing high-purity, low defect lithium deuteride, which will lay the foundation for the rapid development and application of lithium deuteride. These are of great significance and value for the preparation and application of lithium deuteride. At the same time, after improving and upgrading the production technology of lithium deuteride produced by our company, the quality and purity of lithium deuteride have been further improved, and the cost is gradually decreasing. By promoting the research and application of lithium deuteride technology, sustainable energy development can be achieved, promoting environmental protection and sustainable prosperity of human society.
Characteristics
1. Lithium deuteride has abundant deuterium storage capacity, with a deuterium content of 22.48%. It is the only alkali metal that can generate stable deuterides that are sufficient to melt without decomposition.
2. Lithium deuteride has a high level of chemical energy and can be applied to the study of energetic materials.
3. Lithium deuteride has unique properties such as low density and low atomic number, and can be used as a low energy X-ray scattering and transport material, as well as a lightweight neutron moderator.
4. The deuterium required for lithium deuteride can be obtained by extracting deuterium from seawater. Due to the extremely rich content of deuterium in seawater, lithium deuteride has renewable properties. Compared with other non renewable energy sources, lithium deuteride has more sustainable and environmentally friendly characteristics.
Application Scenarios
1. Lithium deuteride can be used as a lithium source in the positive electrode material of lithium-ion batteries.
2. Lithium deuteride can be used as an isotope marker in drug research.
3. Lithium deuteride can be used as a contrast agent in magnetic resonance imaging (MRI).
4. Lithium deuteride can be used as an isotope marker in dyes.
Lithium deuteride can be used as an optical thin film coating material.
Storage And Transportation
1. Storage precautions: Sealed at room temperature, cool, ventilated, and dry under inert gas. Material oxides to avoid: acid, moisture/moisture, alcohol. Keep the storage container dry. Do not eat or drink when using. If in contact with eyes, immediately rinse with plenty of water and seek medical attention. Do not add water to this product. Take measures to prevent static electricity. Wear appropriate protective clothing, gloves, and eye/face protection. In the event of a fire, accurately identify the type of fire-fighting equipment in the space. If you feel unwell, seek medical advice immediately. Lithium deuteride materials and their containers must be disposed of as hazardous materials.
2. Transportation matters: Transport vehicles should be equipped with corresponding types and quantities of fire-fighting equipment and leakage emergency response equipment. It is strictly prohibited to mix and transport with oxidants, edible chemicals, etc. The exhaust pipe of the vehicle carrying this item must be equipped with a flame retardant device. When using tank trucks for transportation, there should be a grounding chain, and holes and partitions can be installed inside the tank to reduce vibration and generate static electricity. It is prohibited to use mechanical equipment and tools that are prone to sparks for loading and unloading. It is best to transport in the morning and evening in summer. During transportation, it is necessary to prevent exposure to sunlight, rain, and high temperatures. When stopping midway, one should stay away from sparks, heat sources, and high temperature areas. During road transportation, it is necessary to follow the prescribed route and not stay in residential or densely populated areas. It is prohibited to slide during railway transportation. It is strictly prohibited to transport in bulk using wooden or cement boats. Danger signs and notices should be posted on transportation vehicles according to relevant transportation requirements.