CIQTEK to Host International EPR Symposium on High-Field and High-Frequency Technologies
CIQTEK to Host International EPR Symposium on High-Field and High-Frequency Technologies
March 30, 2026
CIQTEK, a leading manufacturer and supplier of advanced Electron Paramagnetic Resonance (EPR) instrumentation, will host the "Symposium on Cutting-Edge Technology Applications of EPR – Focus on High-Frequency and High-Field EPR Technology and Complex System Analysis" in Hefei, China.
The event will bring together international researchers, instrument scientists, and application experts to explore the latest developments in high-field EPR, high-frequency EPR spectroscopy, and complex system analysis.
Advancing High-Field EPR for Complex Research Challenges
As research moves toward increasingly complex biological and material systems, high-frequency and high-field EPR technologies are becoming essential tools for improving spectral resolution, sensitivity, and structural insight.
This symposium will focus on how advanced EPR methods enable:
Structural analysis of biological macromolecules and protein aggregation
Investigation of spin dynamics and quantum systems
Characterization of energy materials such as batteries
Improved experimental accuracy through advanced instrumentation and data processing
By addressing real experimental challenges, the event aims to support researchers in generating more reliable and high-quality EPR data.
International Expert Insights Across Academia and Industry
The symposium will feature a series of technical presentations from leading experts across academia and industry, covering both fundamental research and practical EPR applications.
Key topics include:
Next-generation X-, Q-, and W-band EPR instrumentation
AI-enhanced spectral analysis and data interpretation
EPR studies of tau protein aggregation and biomolecular structures
EPR imaging techniques for battery research
Ultra-low temperature systems for advanced spectroscopy
The speaker lineup includes researchers from globally recognized institutions such as Peking University, Tsinghua University, and the French National Centre for Scientific Research (CNRS), highlighting the international scope of the event.
Connecting EPR Users with Instrument Innovation
In addition to scientific sessions, the symposium will provide opportunities for direct interaction between EPR users and instrument developers.
Participants will benefit from:
In-depth discussions on EPR system optimization and experimental workflows
Insights into the latest advances in EPR instrument design and performance
A guided visit to the CIQTEK Scientific Instrument Exhibition Center and Application Center
These activities are designed to bridge the gap between application needs and instrument development, enabling more efficient and targeted research.
High-Frequency & High-Field Pulse Electron Paramagnetic Resonance (EPR) at W-Band (94 GHz) High-frequency EPR technology offers numerous advantages, such as high g-value resolution and minimal sample volume. It is highly applicable in biology, chemistry, and materials science. CIQTEK EPR-W900 supports both continuous-wave and pulsed EPR measurement, including ENDOR, and enables variable temperature experiments from 4 to 300 K. It is equipped with a split-pair superconducting magnet, with a maximum magnetic field of up to 6 T. The superconducting magnet, combined with a cryogen‐free cryogenic system, stabilizes the temperature in the superconducting region without consuming liquid helium, ensuring stable operation and easy maintenance. The EPR software platform is the same as the CIQTEK X-band pulsed spectrometer, making it simple and user-friendly.
CIQTEK X-band pulse electron paramagnetic resonance (EPR or ESR) spectrometer EPR100 supports both continuous-wave EPR and pulse EPR functions. In addition to supporting conventional continuous-wave EPR experiments, the EPR100 can also finely control and measure electron spin quantum states using specific pulse sequences. This enables pulse EPR tests such as T1, T2, ESEEM (electron spin echo envelope modulation), HYSCORE (hyperfine sublevel correlation), etc. The EPR100 instrument offers a comprehensive range of optional accessories, such as ENDOR, DEER, TR-EPR, and AWG modules, which fully meet the requirements of all current pulsed EPR experimental modes. When paired with a variable temperature system, it enables the detection of paramagnetic substances at ultralow temperatures. Pulsed EPR spectroscopy provides higher spectral resolution, revealing the hyperfine interactions between electrons and nuclei and delivering more detailed structural information. This capability is irreplaceable and crucial in scientific research areas such as materials science, biomolecular structure analysis, etc.
Compared with conventional X-band electron paramagnetic resonance (EPR), high-frequency EPR offers significant advantages and provides important capabilities across biological, chemical, and materials research. CIQTEK EPR-Q400 is a Q-band high-frequency pulse EPR spectrometer equipped with both continuous-wave (CW) and pulse EPR measurement modes (for CW-only experiments, the EPR-Q300 CW spectrometer is available). It supports variable-temperature experiments from 4 to 300 K. The EPR software platform is the same as the other CIQTEK X-band pulse spectrometers, making it simple and user-friendly.
Compact X-Band EPR with High Sensitivity & Easy Operation — Ideal for Chemistry, Catalysis, and Materials Research CIQTEK EPR200M is a compact benchtop electron paramagnetic resonance (EPR) spectrometer designed for the detection and analysis of free radicals, transition metal ions, and paramagnetic defects. It allows researchers to monitor chemical reactions in real time and gain deeper insights into materials with high sensitivity and stability. Trusted by Researchers Worldwide >> 300+ EPR Systems Installed | 170+ Scientific Publications << Contact Our Experts > U.S. & North America: info.usa@ciqtek.com > International & Other Regions: info@ciqtek.com