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akaturk Akademik ölçüm

OpenAlex konusu

Advanced Battery Materials and Technologies

Bu sayfa OpenAlex konu etiketine göre çalışmaları ve o konuda görünen akademisyenleri listeler. YÖKSİS temel alan / yan dal değildir.

OpenAlex 1.720 eser 103 yazar konusu

Çalışmalar

1.720 eser

  1. Quantifying Lifetime-Prediction Deviations in Grid-ScaleLFP BESS Aging Simulations: An Ablation Analysis ofPhysical and Control Sub-Models 2026

    Özet henüz yok.

  2. PAHM: A Multi-Stage Aware Hybrid Framework for Lithium-Ion Battery Degradation Modeling and EOL Prediction 2026

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  3. Phosphonate- and Phosphonic Acid-Functionalized Polycyclooctenes Enabling High Ionic Conductivity and Intrinsic Flame Retardancy in Solid-State Lithium-Ion Batteries 2026

    Polymer electrolytes are considered promising materials for next-generation solid-state lithium-ion batteries due to their enhanced safety, flexibility, and electrochemical stability compared to conventional liquid electrolytes. Nevertheless, major bottlenecks including low room-temperature ionic conductivity, poor el…

  4. Phosphonate- and Phosphonic Acid-Functionalized Polycyclooctenes Enabling High Ionic Conductivity and Intrinsic Flame Retardancy in Solid-State Lithium-Ion Batteries 2026

    transference number determination, extended electrochemical stability analysis, and coin cell testing to evaluate cycling performance and interfacial stability, alongside further optimization of polymer structure for enhanced ionic conductivity.

  5. High-rate and durable lithium-ion battery anodes based on a ternary sulfur-doped graphene oxide/polyaniline/SiO2 composite 2026

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  6. Electrochemical Performance Enhancement of VRLA Gel Electrolytes via Polythiophene Addition 2026

    In this study, polythiophene, a conductive polymer synthesized through chemical oxidative polymerization, is used for the first time in the literature as an additive to a fumed silica–based gel electrolyte in valve-regulated lead–acid batteries to improve electrochemical performance, charge-transfer characteristics, a…

  7. Electrochemically synthesized 2 H-MoS₂/sulfur-doped graphene composite at room temperature with superior lithium storage performance 2026

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  8. Acetylacetone–sulfur polymer-derived sulfur/oxygen-doped porous carbons for co₂ capture and lithium–sulfur battery separator coatings 2026

    Abstract Sulfur/oxygen-rich polymer-derived carbons are promising multifunctional materials; however, solvent-assisted strategies for transforming low-molecular-weight oxygenated liquids into solid carbonizable networks remain underexplored. Herein, acetylacetone was used as an oxygen-bearing liquid precursor in a DMS…

  9. DMSO-assisted copolymerization of acetone and sulfur and its application as a Li–S battery cathode 2026

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  10. Metal-Organic Frameworks (MOFs)-Integrated Separator for Improving the Cycle Stability of Lithium–Ion Batteries 2026

    To date, lithium–ion batteries (LIBs) are considered one of the most promising and market-leading energy storage systems due to their high theoretical capacity and energy density. However, poor thermal and cyclic stability, low electrolyte uptake, and the possibility for frequent short circuits of typical separators a…

  11. Tailoring Li-rich NMC cathodes through Sn and Al doping: a comparison of the Pechini method and supercritical CO2-assisted synthesis 2026

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  12. Composition-Dependent Electrochemical Performance of rGO-MnO2-PPy Nanocomposites in Acidic and Neutral Electrolytes 2026

    The demand for supercapacitor electrode materials with high specific capacitance, enhanced energy density, and superior power capability continues to increase. In addition to superior capacitance, electrode materials are required to deliver high energy density, cycling stability, and rate capability. In this study, we…

Akademisyenler

103 akademisyen