Institution
Hefei National Center for Physical Sciences at Nanoscale
Recent research
- Materials & EnergyOpen access
Gate-imprinted memory and light-induced erasure of superconductivity at KTaO3-based interfaces
Realizing non-volatile control of superconductivity is a key step toward integrating memory and quantum functionality in future information technologies. KTaO₃-based heterostructures uniquely host interfacial two-dimensional superconductivity and quantum paraelectric lattice back...
- Biology
Advances in Cyclic Peptides Targeting G Protein‐Coupled Receptors
Peptide‐responsive G protein‐coupled receptors (GPCRs) often recognize endogenous peptide ligands through extended receptor interfaces, providing opportunities for peptide‐based ligands to engage receptor contacts that conventional small molecules struggle to access effectively....
- Materials & EnergyOpen access
Large language models as designers for autonomous research of anisotropic polymer thermocells
Flexible thermoelectric materials face a persistent trade-off between output power and mechanical robustness. Here, we report OmniMat, a large language model-driven framework that designs experimental protocols in a human-in-the-loop workflow without relying on structured task-sp...
- Materials & Energy
Calculation of backscattering correction factors in AES for compounds: Unraveling matrix effects
Backscattering correction factor (BCF) data are essential for quantitative Auger electron spectroscopy (AES) analysis. This study computes BCFs for nine oxides and three zinc chalcogenides by using a Monte Carlo method that incorporates dielectric function theory for discrete ine...
- Engineering & Technology
Crystal Void Fraction‐Engineered Fe‐S Catalysts for Self‐Sustaining Li‐CO 2 Mars Batteries
ABSTRACT Efficient energy storage is vital for self‐sustaining Martian exploration. Li‐CO 2 batteries are promising by utilizing the Martian atmosphere (∼95% CO 2 ) as active materials. Fe‐S minerals, abundant on Mars, offer a viable candidate for cathode catalysts, yet their str...
- Engineering & Technology
Narrowband Hydrocarbon Emitters Enabled by Stereo‐Locked Through‐Space Interactions
ABSTRACT High‐purity emitters with a narrowband emission are a critical requirement for next‐generation displays and lighting, yet it remains a formidable challenge for purely organic materials, particularly in the pure‐violet region. Herein, a general molecular design strategy b...
- Physics & Space
Hydrodynamic phase entrainment drives synchronization of sperm flagella
Synchronization of sperm flagella may enhance reproductive fitness and offers an accessible model for studying biological coordination. However, a fundamental debate persists: while hydrodynamic models predict that fluid coupling alone can synchronize adjacent flagella, experimen...
- Engineering & Technology
Narrowband Hydrocarbon Emitters Enabled by Stereo‐Locked Through‐Space Interactions
ABSTRACT High‐purity emitters with a narrowband emission are a critical requirement for next‐generation displays and lighting, yet it remains a formidable challenge for purely organic materials, particularly in the pure‐violet region. Herein, a general molecular design strategy b...
- Materials & Energy
ABSTRACT Iron dual‐atom (Fe DA) nanozymes, structurally analogous to natural catalase, exhibit promising catalase‐like (CAT‐like) activity, yet further improving their catalytic performance and elucidating the underlying mechanism remain major challenges. Herein, we developed a c...