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The breakthrough in methyl silicone oil technology leads the upgrading of new energy and high-end manufacturing

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The breakthrough in methyl silicone oil technology leads the upgrading of new energy and high-end manufacturing

1. Innovation in photovoltaic packaging technology: Methyl silicone oil becomes a key material for offshore photovoltaic
The latest research shows that methyl silicone oil has made a major breakthrough in the field of photovoltaic module packaging. By optimizing the formula and process, its weather resistance, insulation and thermal conductivity have been significantly enhanced, effectively resisting extreme environments such as high salt spray and strong ultraviolet rays at sea. Experimental data show that the photovoltaic junction box potting compound using methyl silicone oil has a 40% improvement in anti-yellowing performance and a bonding strength retention rate of over 95% in long-term aging tests. This technological breakthrough not only extends the service life of photovoltaic modules but also reduces maintenance costs, providing a solid support for the global clean energy transition.

2. Lithium Battery Electrolyte Revolution: Fully methylated siloxane achieves Dual improvements in safety and efficiency
The fully methylated siloxane-based electrolyte developed by the team from Nankai University has successfully solved the cycle stability problem of lithium metal batteries. This electrolyte, through a fully methylated structure design, increases the energy barrier of the dehydrogenation reaction by 30%, significantly delaying the oxidation decomposition process. Under both room temperature and 50℃ high-temperature conditions, the capacity retention rate of the NCM811 Li equipped with this electrolyte remained at 99.8% after 85 full battery cycles, and the coulombic efficiency remained stable at over 99.6%. This achievement paves the way for the commercial application of the next generation of high-energy-density batteries and is expected to drive the driving range of new energy vehicles to exceed 1,000 kilometers.

3. In the high-end manufacturing sector: Methyl silicone oil drives a leap in the performance of precision instruments
In the industrial field, methyl silicone oil has become a core material for high-end manufacturing due to its excellent lubricity and chemical inertness. Experimental data shows that when it is used as a lubricant for precision bearings, the wear rate is reduced by 75% under a high-speed test of 20,000 revolutions per minute, and the maintenance-free period is extended to 5 years. Meanwhile, its nano-level leveling property can eliminate the orange peel texture of the optical lens coating, keeping the light transmittance above 95%. With the continuous improvement of material performance requirements in industries such as semiconductors and aerospace, the market demand for methyl silicone oil has been growing steadily.

4. Green production process: The methyl silicone oil industry accelerates its low-carbon transformation
In response to the global carbon neutrality goal, methyl silicone oil producers are actively promoting green process transformation. A certain demonstration project adopts a fully automatic continuous production line to achieve "zero discharge" of wastewater and ultra-low emission of waste gas, and is equipped with an automatic monitoring system to ensure that all environmental protection indicators meet the standards. Meanwhile, the research and development of bio-based methyl silicone oil has achieved phased results. Its production process using vegetable oil as raw material can reduce the carbon footprint by 52%, meeting the requirements of the EU's carbon border tax. At the policy level, the state has issued multiple standards to promote energy-saving renovations in the industry. It is expected that the energy consumption per unit of output value of methyl silicone oil will decrease by 4.8% by 2025.

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