Revolutionizing Lithium Storage with LiF-induced SEI! #sciencefather #researchaward


Black phosphorus (BP) has emerged as a promising anode material for lithium-ion batteries due to its high theoretical capacity. However, its application is limited by severe volume expansion and structural degradation during cycling. Recent research introduces LiF-induced in-situ engineering of a dense inorganic solid-electrolyte interphase (SEI) that significantly enhances the electrochemical performance of BP anodes. The engineered SEI stabilizes the BP structure, mitigates pulverization, and improves ionic conductivity, leading to remarkably improved lithium storage capacity, cycle life, and rate performance. This innovative approach opens new avenues for practical, durable, and high-capacity lithium-ion batteries, transforming BP into a viable anode material. Website : superiorengineering.org   Contact : contact@superiorengineering.org   Nomination Open Now : https://superiorengineering.org/award-nomination/?ecategory=Awards&rcategory=Awardee https://www.youtube.com/channel/UCc6L_gSYiXGykLg6M3s1fSw https://www.instagram.com/engineeringawardelite/ https://www.facebook.com/profile.php?id=61572883983646 https://www.linkedin.com/in/superior-engineering-a4198a34b/ https://in.pinterest.com/superiorengineering01/_profile/ http://x.com/awards86226 https://www.blogger.com/blog/posts/4687903420275319096 #BlackPhosphorus #LithiumIonBattery #AnodeEngineering #LiF #SEI #SolidElectrolyteInterphase #InSituEngineering #EnergyStorage #BatteryInnovation #NextGenBatteries #HighCapacityAnode #LithiumStorage #BatteryResearch #Electrochemistry #BPAnode #MaterialsScience #BatteryTechnology #NanoEngineering #AdvancedMaterials #EnergySolutions
 

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