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PUBMED FOR HANDHELDS

Journal Abstract Search


158 related items for PubMed ID: 37861463

  • 1. Ultrahigh areal capacity and long cycling stability of sodium metal anodes boosted using a 3D-printed sodiophilic MXene/rGO microlattice aerogel.
    Pan D, Yang H, Liu Y, Wang H, Xu T, Kong D, Yao J, Shi Y, Li X, Yang HY, Wang Y.
    Nanoscale; 2023 Nov 09; 15(43):17482-17493. PubMed ID: 37861463
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  • 10. Advanced 3D-Printed Potassium Ammonium Vanadate/rGO Aerogel Cathodes for Durable and High-Capacity Potassium-Ion Batteries.
    Duan Z, Zhang X, Xu J, Chu N, Zhang J, Ji M, Wang X, Kong D, Wang Y, Chu PK.
    Small; 2024 Nov 09; 20(47):e2405430. PubMed ID: 39171489
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  • 11. A sodiophilic VN interlayer stabilizing a Na metal anode.
    Xia X, Lv X, Yao Y, Chen D, Tang F, Liu L, Feng Y, Rui X, Yu Y.
    Nanoscale Horiz; 2022 Jul 25; 7(8):899-907. PubMed ID: 35678312
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  • 13. Asymmetric Sodiophilic Host Based on a Ag-Modified Carbon Fiber Framework for Dendrite-Free Sodium Metal Anodes.
    Mo L, Chen AL, Ouyang Y, Zong W, Miao YE, Liu T.
    ACS Appl Mater Interfaces; 2021 Oct 20; 13(41):48634-48642. PubMed ID: 34628855
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  • 14. An MXene-Based Metal Anode with Stepped Sodiophilic Gradient Structure Enables a Large Current Density for Rechargeable Na-O2 Batteries.
    He X, Ni Y, Li Y, Sun H, Lu Y, Li H, Yan Z, Zhang K, Chen J.
    Adv Mater; 2022 Apr 20; 34(15):e2106565. PubMed ID: 35130361
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  • 16. A quasi-3D Sb2S3/reduced graphene oxide/MXene (Ti3C2Tx) hybrid for high-rate and durable sodium-ion batteries.
    Li P, Zang R, Wu Y, Liu S, Wang S, Liu P, Li P.
    Nanoscale; 2022 Apr 07; 14(14):5529-5536. PubMed ID: 35343536
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  • 19. 2D Microporous Polymers/Reduced Graphene Oxide with Built-In Lithiophilic Sites for Uniform Lithium Deposition in Lithium Metal Anode.
    Ghazi ZA, Yin L, Sun Z, Sun C, Shi Y, Shi H, Li F.
    Small; 2024 Dec 07; 20(52):e2406248. PubMed ID: 39396373
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  • 20. Carbon-Confined Two-Dimensional Sodiophilic Sites Boosted Dendrite-Free Sodium Metal Anodes.
    Liu P, Wang X, Jia X, Zhou J.
    ACS Appl Mater Interfaces; 2022 Aug 10; 14(31):35873-35882. PubMed ID: 35912585
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