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Organosilicon Electrolyte Market Product Scope, High Demand and Forecasts 2031
Organosilicon Electrolyte Market IntroductionOrganosilicon compounds have attracted considerable interest as electrolytes for lithium-ion batteries, as they are nontoxic, nonflammable, possess lower glass transition temperatures, lower vapor pressure, and higher flash point as compared to commercial alkyl carbonates. These compounds can improve the electrochemical performance and safety of lithium-ion batteries when used as electrolyte solvents or additives with conventional electrolytes.
Organosilicon electrolytes are currently used as a co-solvent in rechargeable as well as non-rechargeable lithium-ion batteries for numerous end-uses such as defense, electric vehicle, consumer electronics, stationary storage, and others, including textile and electric power.
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Increasing Effort to Overcome Risk of Fire in Lithium-ion Batteries Driving Organosilicon Electrolyte Market
Lithium-ion batteries are currently used in defense and electric vehicles, and are expected to make their presence in energy storage, consumer electronics, industrial, and telecom industries. Electrolyte has been considered as a key factor boosting the higher energy density in lithium-ion batteries.
Lithium-ion battery electrolytes are key raw materials of lithium-ion batteries. Organosilicon electrolytes are expected to replace conventional carbonate electrolytes in lithium-ion batteries due to their low risk of battery fire and explosion. Conventional electrolyte is unstable above 60°C and charge voltages above 4.3 volts. Organosilicon electrolytes have significantly high flash points, and have demonstrated superior stability and safety characteristics.
A key factor impacting the development of lithium-ion batteries for vehicles is the effect of elevated temperature on battery life. Calendar life and cycle life degrade at elevated temperature due to degradation process involving the interaction of the salt, solvents, and electrodes. Safety is undermined by use of high vapor pressure and low flash point volatile carbonate solvents. Overall, the development of Li-ion batteries for vehicles, including enabling of high voltage cathode materials, requires new solvents and salts with electrochemical and thermal stability, and safety characteristics that are beyond the capabilities of current state-of-the-art commercial electrolytes. Organosilicon solvents are thermally and electrochemically stable with vapor pressure significantly lower than linear carbonates commonly utilized in Li-ion batteries.
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Notable environmental advantages, such as reduction of flammability and reduction of carbon emission, are boosting the demand for organosilicon electrolyte for lithium-ion batteries.
Increase in Adoption of Lithium-ion Battery Pack in Marine Industry
Marine vessels run on bunker fuel, which causes high levels of pollution. Furthermore, greenhouse gases are a key concern across the globe. Every year, air pollutants such as carbon monoxide, nitrogen oxide, sulfur oxide, and particulate matter are released in large amounts into the environment. Governments of various countries across the globe are implementing rules and regulations to reduce pollution.
The adoption of hybrid and full electric systems in retrofit ships as well as new ships has been rising for the past few years, owing to these stringent norms. This trend is expected to continue in the near future. Hybrid and full electric marine vessels reduce air pollution as well as the operation cost of vessel in the long run. Furthermore, energy stored in batteries can be used during peak hours in marine propulsion system. This helps reduce the usage of fossil fuel and saves cost. Thus, increase in adoption of lithium-ion battery pack in the marine industry is expected to drive the organosilicon electrolyte market during the forecast period.
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High Initial Cost of Lithium-ion Battery Infrastructure Hampers Global Market
Lithium-ion battery has been available in the market for the past few years; however, it is still considered a developing technology. Currently, lithium-ion battery lacks durability and are expensive. The high cost of lithium-ion batteries is also a main disadvantage. Typically, a lithium-ion battery is around 40% more expensive to manufacture than traditional batteries. Limited number of charging cycles of lithium-ion battery is also one of the factors limiting the use of these batteries. This is likely to affect the operational cost for consumers.
Organosilicon electrolytes are utilized only in rechargeable and non-rechargeable lithium-ion batteries and hence, the high initial cost of lithium-ion batteries is likely to hamper the organosilicon electrolyte market in the near future.
Regional Outlook of Global Organosilicon Electrolyte Market
In terms of volume, North America held a notable share of approximately 90% of the global organosilicon electrolyte market in 2021. It is estimated to grow considerably during the forecast period. The U.S. is the key market in North America due to the high demand for organosilicon electrolyte from the U.S. Navy.
Asia Pacific held the second-largest share of the global market in 2021. The market in the region is estimated to grow at a notable CAGR of 69.2% from 2022 to 2031. China is a key market for organosilicon electrolytes in Asia Pacific, with the country accounting for more than half of market share in 2021.
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Analysis of Key Players in Global Organosilicon Electrolyte Market
Currently there are only two players, Silatronix Inc. and Orbia, operating in the global organosilicon electrolyte market. Research & development and growth of product portfolio are key strategies adopted by market players.
Each of these players has been profiled in the organosilicon electrolyte market report based on parameters such as company overview, financial overview, business strategies, product portfolio, business segments, and recent developments.
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