- Plasmonic and Surface Plasmon Research
- Metamaterials and Metasurfaces Applications
- Gold and Silver Nanoparticles Synthesis and Applications
- Conducting polymers and applications
- Optical Coatings and Gratings
- Fusion materials and technologies
- Advanced Sensor and Energy Harvesting Materials
- Crystallization and Solubility Studies
- X-ray Diffraction in Crystallography
- Nuclear Materials and Properties
- Microwave Engineering and Waveguides
- Antenna Design and Analysis
- Engineering Applied Research
- Catalytic Processes in Materials Science
- Nuclear materials and radiation effects
- Ferroelectric and Piezoelectric Materials
- Microwave Dielectric Ceramics Synthesis
- Advanced Antenna and Metasurface Technologies
- Vibration Control and Rheological Fluids
- Maritime Transport Emissions and Efficiency
- Photonic Crystals and Applications
- Supercapacitor Materials and Fabrication
- Advanced Nanomaterials in Catalysis
- Advanced Cellulose Research Studies
- Thermodynamic and Structural Properties of Metals and Alloys
Xinjiang University
2025
Chinese Academy of Sciences
2015-2024
Institute of Optics and Electronics, Chinese Academy of Sciences
2022-2023
Northwest A&F University
2023
Linyi University
2021-2022
Sichuan University
2021-2022
China General Nuclear Power Corporation (China)
2018-2022
Tokyo University of Marine Science and Technology
2002-2022
Binzhou University
2022
Binzhou Medical University
2022
Energetic ions have been widely used to evaluate the irradiation tolerance of structural materials for nuclear power applications and modify material properties. It is important understand defect production, annihilation migration mechanisms during after collision cascades. In this study, single crystalline pure nickel metal single-phase concentrated solid solution alloys 50%Ni50%Co (NiCo) 50%Ni50%Fe (NiFe) without apparent preexisting sinks were employed study dynamics under ion...
Bound states in the continuum (BICs) are electromagnetic modes with a dispersion inside light cone and infinite lifetimes. This exceptional property has led to intensive research demonstration of BICs gigahertz, teraherz, near-infrared, up visible region. In this study, we design experimentally demonstrate optical using subdiffraction lattice Si nanodisks. The out-of-plane magnetic dipole resonance dielectric nanodisks couples defines symmetry-protected BIC at normal incidence. mode becomes...
A lightweight wearable piezoelectric membrane device with excellent flexibility and air breathability is assembled for the first time using a one step continuous electrospinning method.
Systemic lupus erythematosus (SLE) is characterized by the uncontrolled production of inflammatory cytokines, among which type I interferon (IFN) recognized as a crucial pathogenic factor. The expression microRNA-146a (miR-146a) reduced in white blood cells SLE patients and accounts for their overactivated responses. However, mechanism reduction miR-146a still not fully understood. This study was undertaken to test whether key cytokine, IFN, responsible dysregulation SLE.Gene protein...
Building change detection is a prominent topic in remote sensing applications. Scholars have proposed variety of fully-convolutional-network-based methods for high-resolution images, achieving impressive results on several building datasets. However, existing cannot solve the problem pseudo-changes caused by factors such as “same object with different spectrums” and “different objects same images because their networks are constructed using simple similarity measures. To increase ability...
The combination of various therapeutic modalities has received considerable attention for improving antitumor performance. Herein, an innovative nanohybrid, namely CaO2@FePt-DOX@PDA@CM (CFDPM), was developed synergistic chemotherapy/chemodynamic therapy/Ca2+ overloading-mediated amplification tumor oxidative stress and photothermal enhanced cancer therapy. Camouflage the 4T1 cell membrane enabled CFDPM to escape immune surveillance accumulate in tissue. Ca2+, released from CaO2, could lead...
Abstract Conventional lens technologies face great challenges in applications requiring large apertures and small f‐numbers, while a liquid crystal (LC) based on geometric phase is potential solution. However, the challenge of manufacturing size LC flat with high efficiency gradient still remains. Here, an improved interferometric exposure system proposed to acquire large‐size vectorial optical field for photo‐alignment. Bifacial layers are applied reduce focal length maintaining aperture,...
Surface finishing and polishing are important quality assurance processes in many manufacturing industries. A polished surface (low roughness) is linked with useful properties other than providing an appealing gloss to the product, such as friction, electrical chemical resistance, thermal conductivity, reflection, product life. All these require efficient system working best machining parameters. This study analyzed effects of different input parameters on efficiency torque robotic for...
A wideband dual-polarized dielectric resonator antenna (DRA) with gain-filtering response was proposed in this paper. First, a differentially fed, low-profile crossed-DRA used to obtain orthogonal polarizations two resonant modes. radiation null at upper band edge also generalized. Second, the introduction of four parasitic patches top crossed DRA, another mode lower excited, and bandwidth greatly expanded. Moreover, could help improve selectivity realized gain edge. Furthermore,...
A short-circuited coupling structure (SCCS) is proposed to obtain a gain-filtering response for dual-polarized antennas. conventional dipole designed with two intrinsic radiation nulls. By introducing an SCCS, additional null obtained, and the impedance bandwidth of antenna can be further improved. Based on this design principle, filtering antennas are 4G 5G wireless communication devices. The 1.63–2.97 GHz (|S11| < −15 dB), four nulls at 1.1 GHz, 3.25 3.5 4.0 GHz. 3.23–4.21 (|S33| 1.7...
Aluminum is now widely regarded as a promising plasmonic material, especially in the ultraviolet spectrum. We propose rapid thermal annealing (RTA) simple method to significantly decrease amount of intrinsic losses aluminum nanoparticles. study structural and optical properties nanoparticles before after RTA at different temperatures. Our results unveil how affects Al through competition between reduction number grain boundaries oxidation. If performed below threshold temperature 400 °C,...
Aluminum is now regarded as one of the best metals for pushing plasmonics towards ultraviolet.When exposed to air, a 3-5 nm alumina shell formed rapidly around aluminum, preventing further oxygen penetration.This natural oxidation layer known chemically stabilize Al.Nevertheless, due large surface volume ratio Al nanoparticles, their long-term stability an issue, especially when they are polycrystalline.This critical point has be developed optical properties conventionally evaporated...
Upconversion photoluminescence (UCPL) of rare-earth ions has attracted much attention due to its potential application in cell labeling, anti-fake printing, display, solar and so forth. In spite high internal quantum yield, they suffer from very low external yield poor absorption cross-section ions. the present work, increase by rare earth ions, we place emitter layer on a diffractive array Al nanocylinders. The is designed trap near infrared light via excitation plasmonic-photonic hybrid...
A novel flowerlike multifunctional cascade nanoreactor, BSA-GOx@MnO 2 @FePt (BGMFP), was prepared for synergistic starvation-chemodynamic anticancer therapy.
To mimic the optical influence of disorder in condensed matter, effect uniform on plasmonic resonances were investigated numerically and experimentally aluminum (Al) nanoparticle arrays. Resorting to analogue a periodic array crystal sharp spectrum its anisotropy, transition from glass (with broadened isotropy) is imitated by three kinds Al metasurfaces: varying displacement, size rotation each array. The random variation location or nanodisk induces broadening reduction their without...