1.Radiative lifetimes of the 11Σ–, 11Δ, 21Σ+, a3Π, 13Σ+, d3Δ, and e3Σ– states of carbon monosulfide.《Journal of Quantitative Spectroscopy and Radiative Transfer》2020, 255:107277. SCI三区,第一作者 2.Radiative properties of the six lowest–lying triplet and four lowest–lying singlet states of boron nitride molecule.《Journal of Quantitative Spectroscopy and Radiative Transfer》2020, 250:107053. SCI三区,第一作者 3.Radiative lifetimes of A2Π, B2Σ+, 22Π, 12Σ–, C2Δ, and a4Σ+ states of carbon monosulfide cation.《Journal of Quantitative Spectroscopy and Radiative Transfer》2020, 260:107433. SCI三区,第一作者 4.Radiative lifetimes of several low–lying doublet and quartet electronic states of diatomic boron carbide.《Journal of Quantitative Spectroscopy and Radiative Transfer》2020, 251:107054. SCI三区,第一作者 5.RADIATIVE LIFETIMES OF SEVERAL DOUBLET AND QUARTET STATES OF SILICON BORIDE.《Journal of Quantitative Spectroscopy and Radiative Transfer》2021, 258:107336. SCI三区,第一作者 6.EMISSIVITY MODEL OF STEEL 316L AT 800–1100 K DURING THE GROWTH OF OXIDE LAYER ON THE SPECIMEN SURFACE.《Heat Transfer Research》2019, 50(7):633-647.SCI四区,除导师外一作 7.MODELING EFFECT OF SURFACE OXIDIZATION ON THE NORMAL EMISSIVITY OF RED COPPER T1 AT A WAVELENGTH OF 1.5 Μm AND TEMPERATURE RANGE FROM 800 TO 1100 K..《Heat Transfer Research》2019, 50(13): 1251-1263. SCI四区,除导师外一作 8.NORMAL EMISSIVITY MODEL OF NICKEL-COBALT ALLOYS AT AN ELEVATED TEMPERATURE IN AIR AND AT 1.5 Μm..《Heat Transfer Research》2020, 51(8): 781-796.SCI四区,除导师外一作
|