Jong-Il Yun
Korea Advanced Institute of Science and Technology · 化学
研究室紹介
Professor Jong-Il Yun's research lab specializes in advanced spectroscopic techniques for environmental and nuclear analytical chemistry, with a focus on understanding the speciation and behavior of actinides and critical elements in complex aqueous and molten systems. The lab employs time-resolved laser fluorescence spectroscopy (TRLFS), laser-induced breakdown spectroscopy (LIBS), and EXAFS to investigate the formation and stability of ternary uranyl complexes with alkaline earth and alkaline earth-like cations (e.g., Ca, Mg) in solution, particularly under conditions relevant to nuclear waste management. A key research direction involves developing sensitive, real-time analytical methods for multielement detection in high-level radioactive waste vitrification processes, enabling on-line monitoring of glass melt compositions. The lab also explores the fundamental interactions of trace elements such as boron, lithium, and europium in aqueous and solid phases, contributing to the advancement of nuclear safety and environmental remediation technologies.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15We have applied a dual-pulse laser-induced breakdown spectroscopy (DP-LIBS) to sensitively detect concentrations of boron and lithium in aqueous solution. Sequential laser pulses from two separate Q-switched Nd:YAG lasers at 532 nm wavelength have been employed to generate laser-induced plasma on a water jet. For achieving sensitive elemental detection, the optimal timing between two laser pulses was investigated. The optimum time delay between two laser pulses for the B atomic emission lines wa
The chemical behavior of ternary Ca-UO2-CO3 complexes was investigated by using time-resolved laser fluorescence spectroscopy (TRLFS) in combination with EDTA complexation at pH 7-9. A novel TRLFS revealed two distinct fluorescence lifetimes of 12.7 ± 0.2 ns and 29.2 ± 0.4 ns for uranyl complexes which were formed increasingly dependent upon the calcium ion concentration, even though nearly indistinguishable fluorescence peak shapes and positions were measured for both Ca-UO2-CO3 complexes. For
Laser-induced breakdown spectroscopy (LIBS) was applied to selectively analyze the aqueous suspension of Eu 2 O 3 (s) particles in the presence of the Eu 3+ aquo ion. A plasma was generated by focusing a pulsed Nd:YAG laser beam (λ = 532 nm) into the sample. The light emission from the plasma was detected by a spectrograph equipped with a gated intensified charge-coupled device (ICCD) in the wavelength range of 275–525 nm. The atomic emission intensity of the Eu 2 O 3 (s) suspension was about tw
The paper presents the application of laser-induced breakdown spectroscopy (LIBS) for the on-line multielement analyses of glass melts in a vitrification process of high level liquid waste (HLLW). The third harmonic pulse of an Nd:YAG laser is used for the generation of plasma on the molten glass surface and the plasma emission is monitored by an echelle spectrometer with an intensified charge-coupled device (ICCD), which simultaneously covers the wavelength range from 200 to 780 nm. Twelve diff
Laser-induced breakdown spectroscopy (LIBS) is presented for the on-line multielement analysis of molten radioactive glass at a simulated vitrification process of high level liquid waste (HLLW). A plasma plume is produced by focusing the third harmonic of a Nd: YAG laser (λ = 355 nm) onto the glass melt surface at 1200 °C, and the plasma emission is guided via optical fiber and is characterized by an echelle spectrometer for the spectral range from 200 to 780 nm with a resolution of ±0.01 nm. Co
Abstract The formation of ternary Mg-UO 2 -CO 3 complexes under weakly alkaline pH conditions was investigated by time-resolved laser fluorescence spectroscopy (TRLFS) and extended X-ray absorption fine structure (EXAFS) and compared to Ca-UO 2 -CO 3 complexes. The presence of two different Mg-UO 2 -CO 3 complexes was identified by means of two distinct fluorescence lifetimes of 17±2 ns and 51±2 ns derived from the multi-exponential decay of the fluorescence signal. Slope analysis in terms of fl
The hydrolysis of tetravalent plutonium in 0.5 M HCl/NaCl has been investigated by a combination of spectroscopy and redox potential measurements in the concentration range from 10 -5 to 4×10 -4 M and at pH c 0.3–2.1. Redox potentials were both measured and calculated from the plutonium oxidation state distributions using well-known equilibrium constants for the redox reactions of plutonium. The plutonium oxidation states in solution were quantified by spectroscopy. The p e values calculated fro
Electrochemical and spectroscopic properties of Tb(III) in molten LiCl–KCl eutectic at high temperature were investigated by cyclic voltammetry and time-resolved laser-induced fluorescence spectroscopy (TRLFS). The diffusion coefficient of Tb(III) and the formal standard potential of Tb(III)/Tb0 were determined to be 2.06 ± 0.4 × 10− 5 cm2 s− 1 and − 2.83 ± 0.03 V vs. Cl2/Cl− at 887 K, respectively. Additionally, visible fluorescence of Tb(III) due to the electronic transitions from 5D3 and 5D4