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Technical Deep Dive — Focusing on High-Temperature Interface Stability to Overcome Key Bottlenecks in Thick-Electrode Wetting Technology
2026.05.09
Solution Chapter — Focusing on anode interface modification to overcome bottlenecks in LFP fast-charging technology.
2026.05.06
Pain Points — The Three Core Bottlenecks of Lithium Iron Phosphate Batteries That Hinder the Upgrading of the New Energy Lithium‑Ion Battery Industry
2026.04.17
Carbonyl‑hydroxyl‑modified silicone oil: Effectively enhances polyurethane performance and drives material upgrades.
Polyurethane (PU) is a polymeric material whose main chain contains repeating urethane (-NHCOO-) structural units. Thanks to its unique soft–hard segment architecture, polyurethane exhibits excellent mechanical strength, wear resistance, oil resistance, solvent resistance, and chemical corrosion resistance; however, it suffers from shortcomings in heat resistance and water resistance, which to some extent limit its broader application in high‑end sectors.
2026.04.08
Unveiling the “Longevity Secret” of Lithium Batteries: The Mysteries of VC (Vinylene Carbonate)
Against the backdrop of the deepening implementation of the dual-carbon goals, lithium-ion batteries have become deeply embedded across all facets of production and daily life, including new-energy vehicles, energy-storage power stations, and consumer electronics. Their core performance—characterized by long cycle life and high stability—is closely linked to the scientifically optimized integration with electrolyte functional additives.
2026.03.31