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Yi He's Team | Accurate Estimates of Ultimate 100-Meter Records: Where the Limit of Human Speed Lies?
How fast can humans possibly run the 100-meter dash? This question has captivated the world since Usain Bolt set the current world record of 9.58 seconds. On the 100-meter track, each 0.01-second improvement represents a new breakthrough, making the “limit of human speed” a classic topic in sports science.Recently, Professor Yi He of the College of Science at the Eastern Institute of Technology, Ningbo (EIT), in collaboration with John H.J. Einmahl, a leading authority on extreme value statistic
2026-05-08
Tong Zhou's Team Discovers the Altermagnetic Proximity Effect, Opening a New Path for Magnetic Design and Applications
Recently, the team led by Associate Professor Tong Zhou at the Eastern Institute of Technology, Ningbo, has made significant advances in the field of magnetism and spintronics. For the first time, the research team has revealed an entirely new interfacial physical mechanism—the altermagnetic proximity effect. The findings were published inPhysical Review Letters, a top-tier international physics journal, under the title Altermagnetic Proximity Effect. The paper was selected as an Editors Suggest
COLLEGE OF SCIENCE
2026-05-07
Shihui Wen's Team | Builing "LEGO" at the Atomic Scale to Achieve Programmable Nano-Synthesis
Controlling the growth direction and location of different materials at the atomic scale—much like building with LEGO blocks—has been a long-standing goal for materials scientists. Just as a buildings architecture determines its function, the morphology, composition, and structureof nanomaterials directly dictate whether they serve as efficient catalysts or sensitive biological probes.A team led by Associate ProfessorShihui Wen from the Collegeof Science at the Eastern Institute of Technology, N
COLLEGE OF SCIENCE
2026-04-30
Chen Zhu's Team | Programming Strained Rings to Grow Multiple Functional Groups in One Step
In the world of chemistry, strained rings such as cyclopropanes and cyclobutanes behave like compressed springs, storing considerable reaction driving force. Yet a long‑standing problem has remained: after ring opening, reactions typically stop at the 1,3‑or 1,4‑difunctionalization stage, making it extremely difficult to continue “adding”functional groups on adjacent carbons.Now, a collaborative team led by Prof. Chen Zhu of Eastern Institute of Technology, Ningbo and Prof. Tao Shen of Shanghai
COLLEGE OF SCIENCE
2026-04-09
Jiawei Ruan's Team | A Beam of Light "Ignites" New Magnetism, Creating Odd-Parity Magnets
In the long history of humanitys exploration of magnetism, scientists have continuously discovered new forms of magnetism, driving the development of information technology. Recently, the team led by Assistant Professor Jiawei Ruan from the School of Physics at the Eastern Institute of Technology, Ningbo, in collaboration with several Chinese universities, has achieved a significant breakthrough in the field of light-matter interactions. They have successfully used circularly polarized light to
COLLEGE OF SCIENCE
2026-04-01
Xueliang Sun and Changhong Wang's Team | All-Solid-State Batteries Poised to Reduce Costs by 15% and Increase Ionic Conductivity by 5.8 Times
All-solid-state batteries are hailed as the ultimate form of next-generation batteries, yet high costs and suboptimal energy density remain significant hurdles to their industrialization.Future all-solid-state battery model (AI-generated)A team led by Professor Xueliang Sun, Chair Professor at the Eastern Institute of Technology, Ningbo and Foreign Member of the Chinese Academy of Engineering, and Professor Changhong Wang, Vice Director of theInstitute of Matter and Energy at the Eastern Institu
2026-03-29
Suhuai Wei's Team | Illuminating the Future of Quantum Communication
In quantum communication, optical fibers serve as the information superhighway, with single photons acting as the vehicles carrying information. However, most existing single-photon sources can only travel along the visible or near-infrared sections of this highway, preventing them from directly entering the telecommunication band (1260–1625 nm). This limitation severely compromises transmission efficiency.A research team led by Professor Suhuai Wei, Chair Professor at the School of Physics, Col
COLLEGE OF SCIENCE
2026-03-28
Wei Xia's Team | "Disordering" Crystals Leads to Unexpected Low-Cost Solid-State Electrolytes
In the realm of materials science, well-ordered crystalline structures have long been regarded as the high achievers. This conventional mindset has led to the entrenched belief that halide electrolytes must be lithium-rich to be highly conductive and crystalline to be effective. Consequently, the exploration of ion conduction in amorphous materials has been relatively limited for an extended period.Wei Xia, Assistant Professor at the Eastern Institute of Technology, Ningbo (EIT), and his collabo
COLLEGE OF SCIENCE
2026-03-02
Tong Zhou Team's Research Selected for Physical Review Letters' Collection of the Year 2025
Recently,Physical Review Letters(PRL), one of the worlds top physics journals, officially announced its collection of the year 2025. The original research achievement on antiferroelectric altermagnets by the team of Associate Professor Tong Zhou from the Eastern Institute of Technology, Ningbo (EIT), has been selected.Physical Review Lettersis among the most influential physics journals globally, publishing approximately 2,500 papers annually. Only about 60 of these are selected for this annual
COLLEGE OF SCIENCE
2026-02-18
Suhuai Wei's Team Secures Spot in "Top 10 Semiconductor Research Advances" for the Second Straight Year
On February 13, the Journal of Semiconductors officially announced the 2025 Top 10 Semiconductor Research Advances. The study Overcoming asymmetric carrier injection in III-nitride light-emitting diodes through defect engineering, conducted by Professor Suhuai Wei, Chair Professor and Dean of the School of Physics at the Eastern Institute of Technology, Ningbo (EIT), and his collaborators, was successfully selected. This marks the second consecutive year that Professor Suhuai Weis team has recei
COLLEGE OF SCIENCE
2026-02-14
Research Team Including Zongwei Cai Identifies Key to Suppressing Cancer Metastasis: Reducing "Special Fuel" Supply
A collaborative study led by Professor Jun Yu and Professor Zijun Huang from The Chinese University of Hong Kong, together with Chair Professor Zongwei Cai from the Eastern Institute of Technology, Ningbo, has demonstrated that branched-chain amino acid (BCAA) metabolism drives colorectal cancer metastasis through the uridine monophosphate-vimentin (UMP-Vimentin) axis.This work is the first to establish that the expression levels of the cytosolic branched-chain amino acid transaminase (BCAT1) an
COLLEGE OF SCIENCE
2026-02-10
Wei Xia's Team | A Surface Halogenation Strategy for Extending Cycle Life in Silicon-Based Solid-State Batteries
Imagine smartphones that require charging only once a week, or electric vehicles capable of exceeding 1,000 km on a single charge. All-solid-state batteries (ASSBs), regarded as the next-generation power source, could turn this vision into reality.However, a critical challenge hinders their development: when high-capacity silicon is used as the anode, it exhibits severe interfacial incompatibility with sulfide-based solid electrolytes (e.g., Li₆PS₅Cl, LPSC). Continuous side reactions at the inte
COLLEGE OF SCIENCE
2026-01-04
Chen Zhu's Team | Wielding Electricity to Rewrite Molecules—Organic Electrosynthesis Awakens Dormant Bonds
organic electrosynthesisis the modern conductor who directs molecules not with heat, not with acids or bases, but with a stream of electricity.As electrons flow gently across the electrode surface, they apply a soft yet precise electric-field nudge to molecules, causing previously inert chemical bonds to cleave and reorganize at just the right moment, composing entirely new molecular architectures.The key advantage of electrosynthesis lies in its ability to precisely control reaction patterns, s
COLLEGE OF SCIENCE
2025-12-15
How Did Eukaryotic DNA Replication Machinery Evolve? Professor Fabai Wu's Team Finds Answers in Archaea
The accurate replication of genetic material DNA is one of the most fundamental biological processes essential for the survival, growth, and reproduction of all living organisms. Eukaryotes, including humans, plants, yeast, and paramecia, share a similarly complex DNA replication machinery. How did this sophisticated machinery evolve? A team led by Associate Professor Fabai Wu from the College of Science at Eastern Institute of Technology, Ningbo has found answers in a group of marine archaea.On
COLLEGE OF SCIENCE
2025-10-29
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