SIAT Research
  • Oct 27, 2023
    Exploring MXene-enhanced Plasmonic Sensing for Ultrasensitive Label-free miRNA Detection
    "Our biosensing technique provides a promising tool for the effective detection of miRNA and could evolve into a platform to detect a wide class of nano-objects, such as many other tumor biomarkers... microRNAs (miRNAs) are small non-coding RNA molecules that play an important role in the development and progression of various types of cancer, which makes it as biomarkers. The detection of miRNA...
  • Oct 25, 2023
    Anisotropic Lattice Induces High-Q Chiroptical Responses in Surface Lattice Resonance Metasurfaces
    "We expect this high-Q and strong chiroptical metasurface will find applications in chiral sensing and wavefront modulations." Dr. LI said. Chirality is an intrinsic property of an object that cannot coincide with its mirror image by translation or rotation. In order to realize strong chiral light-matter interactions, which are usually...
  • Oct 24, 2023
    Advancing High-Temperature Superconductivity in Carbon Materials
    The study was published in Advanced Science on October 10. Researchers, led by Prof. ZHONG Guohua from the Shenzhen Institute of Advanced Technology (SIAT) at the Chinese Academy of Sciences (CAS) have made a significant prediction regarding superconductiv...
  • Oct 24, 2023
    Ring Artifacts Correction for Computed Tomography Image Using Unsupervised Contrastive Learning
    In this study, employing DCLGAN to eliminate strip artifacts in the polar coordinate system. Subsequently, applying post-processing techniques to extract ring artifacts from the image, with the aim... Researchers led by Associate Professor LIANG Xiaokun from the Shenzhen Institute of Advanced Technology (SIAT) of the Chinese Academy of Science (CAS), along with their collaborators have proposed ...
  • Oct 24, 2023
    Revolutionizing Plasmonics: Study in Suppression of Losses Unveils New Possibilities
    A research team led by Dr. LI Guangyuan from the Shenzhen Institute of Advanced Technology (SIAT) at the Chinese Academy of Sciences has conducted experiments demonstrating that it is possible to s... Over the past two decades, plasmonics has emerged as a promising platform for the large-scale integration of nanophotonic devices, enabling a wide range of applications. However, the field has grap...
  • Oct 20, 2023
    Exploiting Energy Harvesting Technologies to Capture Energy from Human Motion
    In this study, researchers developed a lightweight piezoelectric bending beam-based human knee energy harvester to generate electricity during walking. Researchers led by Prof. GAO Fei and Prof. WU Xinyu from the Shenzhen Institute of Advanced Technology (SIAT) of the Chinese Academy of Sciences have exploited energy harvesting technologies to dev...
  • Oct 20, 2023
    Optimizing Cytochrome P450 Network for High Level Production of Quillaic Acid: the Aglycone of Natural Adjuvants
    "Our work demonstrate the feasibility of using a combinatorial optimization strategy to assemble an enzyme network that catalyzes the multi-step oxidation of inert substrates to synthesize function... The versatile role cytochrome P450s (CYPs) play in nature makes them an important tool in synthetic biology for building microbial cell factories (MCFs) to produce commercially valuable pharmaceuti...
  • Oct 16, 2023
    Circuit-Specific Gene Therapy Brings New Hope for Treatment of Parkinson's Disease
    Given its success in primate PD model, this brand-new circuit-manipulating gene therapy approach shows great feasibility for treating PD in humans. Researchers from the Shenzhen Institute of Advanced Technology (SIAT) of the Chinese Academy of Sciences (CAS) and their collaborators have developed a gene therapy strategy to selectively manipula...