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Anode-less Solid-State Li–S Batteries Enabled by Fe-Stabilized Polysulfides
Cite Jump to ExpandCollapse LetterMarch 5, 2026 Anode-less Solid-State Li–S Batteries Enabled by Fe-Stabilized Polysulfides Click to copy article linkArticle link copied! Shijie Feng Shijie Feng Materials Science and Engineering Program, University of California San Diego, La Jolla, California 92093, United States Sha Tan Sha Tan Chemistry Division, Brookhaven National Laboratory, Upton, New York 11973, United States Mengchen Liu Mengchen Liu Aiiso Yufeng Li Department of Chemical and Nano...
Intrinsically charge-generating polymers with long-lived free carriers for efficient photon-to-hydrogen conversion
Abstract A single organic semiconductor typically struggles with inefficient intrinsic charge generation due to large binding energy (EB ≈ 0.5 electron volts) of Frenkel excitons, particularly in narrow-bandgap organic semiconductors that exhibit near-infrared (NIR) absorption. Here, we develop double-cable polymer–based nanoparticles (NPs), enabling single-component organic photocatalysts to achieve NIR photon absorption and generate long-lived free charges simultaneously.
Structure Search with the Strategic Escape Algorithm
Journal of Chemical Theory and Computation Cite this: J. Chem. Theory Comput. 2025, XXXX, XXX Click to copy citationCitation copied! . This publication is licensed under CC-BY-NC-ND 4.0 . You are free to share (copy and redistribute) this article in any medium or format within the parameters below: Creative Commons (CC): This is a Creative Commons license. Attribution (BY): Credit must be given to the creator. Non-Commercial (NC): Only non-commercial uses of the work are permitted.
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