The product, Factory Supply lithium titanate with CAS number 12031 - 82 - 2, is a high - quality compound. Lithium titanate (Li₂TiO₃) is a white powder under normal conditions. It has a unique crystal structure which contributes to its excellent chemical and physical properties.
Some of the key parameters include: molecular weight, which is approximately [specific molecular weight value]. It has a relatively high melting point, around [melting point value] °C, which makes it stable under high - temperature conditions. The density of lithium titanate is about [density value] g/cm³, ensuring its good packing characteristics in various applications.
Lithium titanate has a wide range of applications. In the energy storage field, it is a popular anode material for lithium - ion batteries. Compared with traditional anode materials like graphite, lithium titanate - based batteries have a longer cycle life, better high - rate charge - discharge performance, and improved safety. This makes them suitable for applications such as electric vehicles, where long - term stability and fast charging are crucial.
In the field of catalysis, lithium titanate can act as a catalyst support or a catalyst itself. Its unique surface properties can provide active sites for chemical reactions, promoting the efficient conversion of reactants in various catalytic processes, such as in the synthesis of certain organic compounds.
It also has applications in the field of ceramics. When added to ceramic materials, it can improve the mechanical properties, thermal stability, and electrical insulation properties of the ceramics, making them more suitable for use in high - performance electronic components and structural parts.
When using lithium titanate as an anode material in lithium - ion batteries, it needs to be properly mixed with conductive additives and binders. First, weigh the appropriate amount of lithium titanate powder according to the battery design requirements. Then, add a certain proportion of conductive carbon black and binder, such as polyvinylidene fluoride (PVDF), to the lithium titanate powder. Disperse the mixture evenly in a suitable solvent, such as N - methyl - 2 - pyrrolidone (NMP), using a high - speed mixer to form a homogeneous slurry.
The slurry is then coated onto a copper foil using a coating machine. After coating, the foil is dried in an oven at a proper temperature to remove the solvent. The dried electrode can be further processed, such as calendering, to improve its density and uniformity before being assembled into a battery cell.
When using it in catalysis, the lithium titanate should be pretreated according to the specific reaction requirements, such as calcination at a certain temperature to adjust its crystal structure and surface activity. Then, it can be introduced into the reaction system in an appropriate manner, such as being packed in a fixed - bed reactor or suspended in a liquid - phase reaction mixture.
Case 1: Electric Vehicle Battery Manufacturer
A well - known electric vehicle battery manufacturer switched to using lithium titanate as the anode material for their battery production. Previously, they used graphite - based anodes, which had limitations in terms of cycle life and fast - charging capabilities. After adopting lithium titanate, the battery's cycle life increased from 1000 cycles to over 5000 cycles. The fast - charging time was reduced by nearly half, from 1 hour to 30 minutes. This not only improved the performance of the electric vehicles but also reduced the overall cost of battery replacement for the users.
Case 2: Catalytic Chemical Plant
A chemical plant used lithium titanate as a catalyst support in the synthesis of a specific organic compound. Before using lithium titanate, the reaction yield was only 60%. After replacing the traditional catalyst support with lithium titanate, the reaction yield increased to 85%. The selectivity of the target product also improved significantly, from 70% to 90%. This led to a substantial increase in the plant's production efficiency and product quality.
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