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首页 / Research Progress
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March.11.2025
PNAS Publication | Zhangjiang Advanced Research Institute's Ultrafast Science Center Discovers Unique Photoreduction Mechanism in Arabidopsis Class II Photolyase (AtPL)

Recently, the international authoritative journal The Proceedings of the National Academy of Sciences (PNAS) published online the collaborative research findings of the Ultrafast Science Research Center at Zhangjiang Advanced Research Institute, Shanghai Jiao Tong University, titled “Elucidation of a distinct photoreduction pathway in class II Arabidopsis thaliana photolyase.” Corresponding authors ...

February.07.2025
JACS Publication | Prof. Xudong Qu’s Team at Shanghai Jiao Tong University Reveals the Biosynthetic Mechanism of an Axially Chiral Biphenyl Framework in Aromatic Polyketides

Recently, the internationally renowned journal Journal of the American Chemical Society (JACS) published online a collaborative research work by Professor Xudong Qu’s team from the School of Life Sciences and Biotechnology / Zhangjiang Institute for Advanced Study, and Professor Shukun Luo’s team from the same school.The paper is titled “A Stereoselective Decarboxylative Aromatase/Cyclase Directs ...

February.07.2025
JACS Publication | Shanghai Jiao Tong University's Xu Dong Qu Research Group Discovers Biosynthetic Mechanism of Aromatic Polyketone Axial-Chiral Biphenyl Skeleton

Recently, the prestigious international journal Journal of the American Chemical Society (JACS) published online the collaborative research findings of Professor Xu-Dong Qu's team from the School of Life Sciences and Technology/Zhangjiang Advanced Research Institute at Shanghai Jiao Tong University and Professor Shu-Kun Luo's team from the School of Life Sciences and Technology. The paper, titled “...

January.28.2025
JACS Publication | Prof. Jun Ni’s Team at Shanghai Jiao Tong University: Artificial Phototrophic Communities for Light-Driven Negative-Carbon Biomanufacturing

Recently, the team led by Professor Jun Ni from the School of Life Sciences and Biotechnology / Center for Synthetic Science Innovation, Zhangjiang Institute for Advanced Study, Shanghai Jiao Tong University, published their latest research in Journal of the American Chemical Society under the title: “Facilitated channeling of fixed carbon and energy into chemicals in artificial phototrophic communities....

January.28.2025
JACS Publication | Ni Jun Team at Shanghai Jiao Tong University: Novel Artificial Photosynthetic Community Enables Light-Driven Negative-Carbon Biosynthesis

Recently, the research team led by Jun Ni from the School of Life Sciences and Technology at Shanghai Jiao Tong University and the Center for Innovation in Synthetic Science at the Zhangjiang Advanced Research Institute published their latest study titled “Facilitated channeling of fixed carbon and energy into chemicals in artificial phototrophic communities” in the Journal of the American Chemical ...

January.24.2025
Cell Publication | Associate Professor Ni Jun's Team at Shanghai Jiao Tong University: Rational Design of Artificial Multienzyme Complexes

On January 24, 2025, The research group of Associate Professor Ni Jun from the School of Life Sciences and Technology at Shanghai Jiao Tong University and the Center for Innovation in Synthetic Science at the Zhangjiang Advanced Research Institute published a paper titled “Rational multienzyme architecture design with iMARS” in Cell. The study unravels the “code” linking spatial proximity and efficiency ...

January.22.2025
Nat. Comm. Publication | Shanghai Jiao Tong University's Li Wanwan/Yu Xujiang Team Achieves Major Breakthrough in Multifunctional Bismuth(V) Nanomaterials for Tumor Immunotherapy

Recently, Nature Communications published online the research paper “A high-valence bismuth(V) nanoplatform triggers cancer cell death and anti-tumor immune responses with exogenous excitation-free endogenous H₂O₂- and O₂₂-independent ROS generation” by the team of Researcher Li Wanwan and Associate Professor Yu Xujiang from the Future Materials Innovation Center at Shanghai Jiao Tong University'...

January.15.2025
Nat. Comm. Publication | Shanghai Jiao Tong University's Fan Chunhai/Song Ping/Zuo Xiaolei Team Develops High-Throughput Homogeneous Nucleic Acid Amplification Technology for Scalable DNA Information Storage

Recently, the research team led by Fan Chunhai, Song Ping, and Zuo Xiaolei at Shanghai Jiao Tong University published their latest study titled “Massively parallel homogeneous amplification of chip-scale DNA for DNA information storage (MPHAC-DIS)” in Nature Communications. This research developed a thermodynamically driven high-throughput primer design method (MPHAC), enabling parallel and homogeneous ...

January.08.2025
Nat. Synth. Publication│Shanghai Jiao Tong University's Luo Jiayan Team: Single-Crystal Lithium in Solid-State Batteries

Research Background:Lithium metal has long been regarded as an ideal anode material for high-energy-density batteries. However, its application is limited due to the tendency of lithium metal to form dendrites at practical current densities. In solid-state lithium batteries, primary failures typically stem from mechanical issues, where lithium dendrites can penetrate and/or disrupt the solid electrolyte....

January.07.2025
Energy Environ. Sci. Publication | Shanghai Jiao Tong University's Zhuang Xiaodong and Collaborators: Machine Learning Develops Fast Ionic Electrolyte for Solid-State Lithium Batteries

I. Research Background:All-solid-state batteries are garnering significant attention due to their distinct advantages over conventional liquid lithium-ion batteries, namely high energy density and enhanced safety. Among these, solid-state electrolytes, as core components of all-solid-state batteries, have emerged as a research hotspot in recent years. In the quest to identify solid-state electrolytes ...

January.07.2025
Adv. Mater. Publication | Shanghai Jiao Tong University's Zhuang Xiaodong Team: Dipole-Enhanced Polymers Facilitate High-Current Electrocatalytic CO₂ Reduction to Ethylene

Electrochemical conversion of carbon dioxide (CO₂) into higher-value chemical products using renewable electricity represents one of the most promising technologies for achieving carbon neutrality. Among numerous products, ethylene holds immense industrial demand as a feedstock for diverse chemical derivatives via catalytic processes. Within electrochemical CO₂ reduction, C-C coupling is recognised ...

December.26.2024
Nat. Chem. Biol. Publication | From Innovation to Clinical Application: Breakthroughs and Future Prospects of Phage Display Dicyclic Peptide Technology

On 25 December, Associate Professor Xudong Kong from the School of Life Sciences and Technology/Zhangjiang Advanced Research Institute and Professor Changlin Tian from the School of Chemistry and Chemical Engineering/Zhangjiang Advanced Research Institute at Shanghai Jiao Tong University were invited to publish a review article in Nature Chemical Biology on the progress of phage display bicyclic peptide ...

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