• Product Name: Dimethyl carbonate
  • Short Name: DMC
  • Appearance: Colourless liquid
  • Purity: ≥99.9%
  • CAS No: 616-38-6
  • HS Code: 2920900090
  • Molecular Formula: OC(OCH3)2

Dimethyl carbonate (DMC) is a low-toxic, environmentally friendly, and widely used organic synthesis intermediate. It is a transparent liquid at room temperature and is difficult to dissolve in water, but can be miscible with alcohols, ketones, esters, etc. in any ratio. DMC molecules contain carbonyl, methyl, methoxyl groups, etc. It has good reactivity, and can replace highly toxic phosgene, dimethyl sulfate, methyl chloride, as carbonylating agents, methylating agents, and methoxylating agents. DMC has the characteristics of safe use, convenience, low pollution, and easy transportation in production. Dimethyl Carbonate is also widely used in pesticides, medicines, spices, fuel additives, solvents, and electronics industries.

ItemDimethyl Carbonate
AppearanceClear, colorless liquid
Boiling Point90 °C (194 °F)
Density1.06 g/cm3 @ 25 °C (77 °F)
Dynamic Viscosity0.66 mPa.s @ 20 °C (68 °F)
Flash Point14.4 - 18 °C (57.9 - 64 °F)
Lower Explosion Limit4.2 %(V)
Melting Point2 - 4 °C (36 - 39 °F)
Odorcharacteristic
Relative Density1.064 - 1.069 @ 25 °C (77 °F) Reference Material: (water = 1)
Vapor Pressure18 mmHg @ 20 °C (68 °F)

‌Excellent Performance of Dimethyl Carbonate (DMC)

  • High solubility‌. ‌DMC can dissolve lithium salts and other electrolytes in the battery well at room temperature, allowing these electrolytes to be evenly dispersed in the electrolyte to form a good conductive environment. This allows the electrolyte to transfer charge more effectively and improve the performance of the battery.
  • ‌Reduced viscosity‌. ‌DMC solvent can reduce the viscosity of the electrolyte and improve the charge and discharge performance and cycle life of the battery. Low viscosity allows the electrolyte to flow more smoothly inside the battery, so that the ion transmission speed is faster during the charge and discharge process of the battery, thereby improving the power performance of the battery. For example, mobile phones, electric vehicles and other devices are more responsive and more powerful when used.
  • Wide electrochemical window.‌ It can work stably at higher voltages, adapt to the requirements of high energy density battery systems, and help improve the energy output and use efficiency of the battery.
  • Low volatility. ‌DMC is not easy to volatilize, which can reduce the loss of electrolyte during the use of the battery, allowing the battery to maintain stable performance for a long time and extend the cycle life of the battery.
  • ‌Environmental performance‌.‌ DMC is an environmentally friendly chemical raw material that is friendly to the environment and the human body. Its low toxicity and low vapor pressure properties enable it to maintain stable performance even under high temperature and high pressure environments, making it suitable for use in the electrolyte of high-energy lithium batteries.
  • ‌Safety‌.‌ In some battery systems, such as metal lithium batteries, dimethyl carbonate solvent can inhibit the passivation and corrosion of metal lithium, making the chemical reaction inside the battery more stable and reducing the risk of battery failure or safety problems.

The Role of Dimethyl Carbonate in Electrolytes

The role of conducting ions. In lithium batteries, the main function of the electrolyte is to transfer ions between the positive and negative electrodes to achieve the normal charging and discharging process of the battery. As an electrolyte solvent, DMC carries the conduction of lithium ions and other electrolyte ions, ensures the smooth flow of the electrolyte, and provides key support for the normal operation of lithium batteries.

Participate in film-forming reactions and improve cycle stability. During the battery charging and discharging process, dimethyl carbonate may react on the electrode surface to form a stable solid electrolyte interface film (SEI film). This film can prevent further side reactions between the electrode material and the electrolyte, improving the safety and stability of the battery. At the same time, it can also reduce the capacity attenuation of the battery during the cycle process and extend the service life of the battery.

Enhance energy density. By optimizing the electrolyte formula and increasing the content of DMC, the energy density of the battery can be improved to a certain extent to meet the needs of high energy density batteries.

Used in a variety of battery systems. In addition to lithium-ion batteries, dimethyl carbonate is also used in other types of batteries such as sodium-ion batteries, magnesium-ion batteries, and aluminum-ion batteries. In the preparation of electrolytes for these batteries, it can also play a role in dissolving electrolytes and promoting ion conduction, helping to improve battery performance.

DMC for Electric car batteries
lithium-ion batteries
Batteries

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