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  • ABOUT US
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    • Contact Us
  • RESEARCH DIVISIONS
  • FACILITIES
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    • Research Progress
    • News Update
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  • INTERNATIONAL
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  • JOIN US
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NEWS & EVENTS

  1. Home > NEWS & EVENTS > Research Progress
  • Research Progress
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Research Progress
  • “ScienceOne–Yuheng Carbon Accounting Large Model” Version 1.0 released
    On April 8th , the “ScienceOne–Yuheng Carbon Accounting Large Model” (hereinafter referred to as the “ScienceOne–Yuheng Model”) was released in Shanghai, which is the world’s first panoramic carbon emission accounting system covering production, consumption, and natural sources.
    Apr 08, 2026
    “ScienceOne–Yuheng Carbon Accounting Large Model” Version 1.0 released
  • Researchers Generate Continuous-Wave Terawatt-Scale Attosecond X-Ray Pulses at SHINE
    The high repetition rate would further enable rapid statistical averaging, significantly improving sensitivity to weak or rare ultrafast phenomena while enhancing experimental stability.
    Mar 17, 2026
    Researchers Generate Continuous-Wave Terawatt-Scale Attosecond X-Ray Pulses at SHINE
  • Researchers Propose a Dynamic Formation Mechanism of Enzymatic Nanobubbles for Nerve Injury Treatment
    A joint research team led by Prof. ZHANG Lijuan from the Shanghai Advanced Research Institute, Chinese Academy of Sciences and Tongji University proposed a peptide-stabilized lactate oxidase and catalase system, which can effectively deliver oxygen to cells and tissues in Nerve Injury Treatment.
    Jan 28, 2026
    Researchers Propose a Dynamic Formation Mechanism of Enzymatic Nanobubbles for Nerve Injury Treatment
  • Researchers Achieve 7-30 THz Continuously Tunable Strong-Field Terahertz Free-Electron Lasers
    In a study published in Nature Photonics, the Free-electron Laser Team of the Shanghai Advanced Research Institute (SARI), Chinese Academy of Sciences developed an innovative approach by employing beating-frequency laser modulation of electron beams to precisely tailor the beam structure and produce continuously tunable THz radiation.
    Oct 21, 2025
    Researchers Achieve 7-30 THz Continuously Tunable Strong-Field Terahertz Free-Electron Lasers
  • Researchers Developed High-performance Pt Single-Atom Catalysts for Low-Temperature CO Oxidation
    A research team from Shanghai Synchrotron Radiation Facility (SSRF) Science Center of Shanghai Advanced Research Institute, Chinese Academy of Sciences, have developed a high-performance catalyst by anchoring oxidized platinum single atoms on La-vacancy LaFeO₃ via a defect-engineering strategy. The catalyst delivers efficient low-temperature CO oxidation without reduction pretreatment and shows remarkable stability. The findings were published in the Journal of the American Chemical Society​.
    Sep 23, 2025
    Researchers Developed High-performance Pt Single-Atom Catalysts for Low-Temperature CO Oxidation
  • Researchers Proposed a Direct-Amplification Enabled Harmonic Generation Free-Electron Laser
    Recently, the Free-Electron Laser (FEL) team at the Shanghai Advanced Research Institute (SARI), Chinese Academy of Sciences experimentally demonstrated their independently proposed concept of Direct-Amplification Enabled Harmonic Generation Free-Electron Laser (DEHG-FEL) for the first time, and successfully achieved its lasing and stable operation.
    Jul 25, 2025
    Researchers Proposed a Direct-Amplification Enabled Harmonic Generation Free-Electron Laser
  • Shanghai Synchrotron Radiation Facility Deciphers Real-Time Morphology Evolution in All-Polymer Solar Cells During Solvent Vapor "Sauna"
    Evolution of d-spacing and CCL evolution of100 peak for blade coated PM6:PY-IT blend films with a)CF, TA+CF, CS2, and d)TA+CS2.
    Jul 24, 2025
    Shanghai Synchrotron Radiation Facility Deciphers Real-Time Morphology Evolution in All-Polymer Solar Cells During Solvent Vapor
  • Researchers Found Novel Approach to Low-loading Pt Based Catalyst for PEM Fuel Cell
    A research team at Shanghai Advanced Research Institute (SARI) of the Chinese Academy of Sciences proposed an entropy-increase assisted anti-sintering concept to fundamentally reduce the surface energy of NPs by increasing the mixing entropy, thus hindering the migration and coalescence of NPs. The research results were published in Advanced Functional Materials in May, 2025.
    May 22, 2025
    Researchers Found Novel Approach to Low-loading Pt Based Catalyst for PEM Fuel Cell
  • Researchers Reveal Novel Thermal Conduction Crossover due to Broken Parity in Superlattice
    A research team from Shanghai Advanced Research Institute (SARI) of the Chinese Academy of Sciences reported a crossover of thermal conduction with a third-order-like singularity in a Fermi-Pasta-Ulam-Tsingou (FPUT) superlattice. The research results were published in Physical Review E in May 2025.
    May 20, 2025
    Researchers Reveal Novel Thermal Conduction Crossover due to Broken Parity in Superlattice
  • Researchers Unveiled Key Role of Bridge Adsorbed Hydrogen in Efficient Acidic Hydrogen Production
    A research team at Shanghai Advanced Research Institute (SARI) of the Chinese Academy of Sciences designed a face-centered cubic-Ru nanocrystal modified with Pt atomic chains and unveiled the important role of *Hbridge intermediates adsorbed on Pt-Ru atomic pairs in determining the intrinsic activity of HER.
    Apr 24, 2025
    Researchers Unveiled Key Role of Bridge Adsorbed Hydrogen in Efficient Acidic Hydrogen Production
  • Researchers Propose Bit-Cigma: A Zero-Error, Sparsity-Aware Matrix Multiplication Accelerator for AI
    A research group from Shanghai Advanced Research Institute of Chinese Academy of Sciences has unveiled Bit-Cigma, a revolutionary generic matric multiplication accelerator hardware architecture that optimizes bit-sparsity, ensures zero-error accuracy, and remodels floating-point computations. The results were published in Feb 2025 in IEEE Transactions on Computers.
    Mar 13, 2025
    Researchers Propose Bit-Cigma: A Zero-Error, Sparsity-Aware Matrix Multiplication Accelerator for AI
  • Researchers Developed a Novel Ni Hollow Fiber Electrode for High-efficiency CO2 Electroreduction
    In a study published in The Innovation​, a research team from Shanghai Advanced Research Institute of the Chinese Academy of Sciences constructed a hierarchical SnO2(101)@Ni composite hollow-fiber penetration electrode (HPE), which helped to realize high-efficiency CO2 electroreduction to formate in neutral electrolyte at ampere-level.
    Mar 03, 2025
    Researchers Developed a Novel Ni Hollow Fiber Electrode for High-efficiency CO2 Electroreduction
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