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2026[1]
Subsurface Vacancy Engineering Enables Atomically Clean and Oxidation-Resistant Copper Interfaces..., ACS nano, 2026,
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2026[2]
Evaluating the Interfaces of High-Voltage Cathodes in Batteries, Electrochemical Energy Reviews, 2026,
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[3]
Carbon Nanotube-Aramid Fiber Enabled Dielectric Dispersion in Paper Composites for Ultrabroadband..., Nano Letter,
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2026[4]
Probing Mesoscopic Solvation Dynamics via Comparable-Sized Nanomolecular Clusters, J. Am. Chem. Soc., 2026,
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2026[5]
Carbon nanotube–aramid meta-absorbers with integrated mechanical robustness and broadband electr..., Carbon, 2026, 254, 121528
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2026[6]
Stabilizing All-Solid-State Li–S Batteries by a Polysulfide-Repelling and Anode-Protecting Self-..., Journal of the American Chemical Society, 2026,
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2025[7]
Unraveling the Orientation-Property Relationship in Graphene Fibers for Enhanced Microwave Absorp..., Advanced Functional Materials, 2025, e19036
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2025[8]
Dimension-engineered sequential assembly of carbonene materials on arbitrary fiber substrates for..., Matter, 2025, 8, 102427
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2025[9]
Regulated Electronic and Ionic Conductive Framework for High Energy Density Lithium−Sulfur Batte..., Journal of the American Chemical Society, 2025,
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2025[10]
Microwave-enabled rapid, continuous, and substrate-free synthesis of few-layer graphdiyne nanoshe..., New Carbon Materials, 2025, 40, 3,