l 学术论文(部分) [1] Si J*, Luan H, Liu H, et al. Fe-based Metallic Glasses as Efficient Oxygen Scavengers. Nature Communications, 2026. [2] Si J*, Liu Q, Ren L, et al. Deciphering the exceptional chemical activity of a High-entropy metallic glass [J]. Materials Research Letters, 2025, 13(6): 614-22. [3] Si J*, Lu S, Luan H, et al. Minor Cu modification endows inactive industrial FeSiBNbCu metallic glass with robust azo dye degradation activity [J]. Applied Surface Science, 2025, 689: 162511. [4] Ma R, Chang L, … , S J* P Yu*. Magnetic properties of soft magnetic composites fabricated from amorphous Fe73Si11B11C3Cr2 powder by hot pressing under a low pressure [J]. Powder Technology, 2023, 426: 118639. [5] Si J*, Ma R, Wu Y, et al. Microstructure and magnetic properties of novel powder cores composed of iron-based amorphous alloy and PTFE [J]. Journal of Materials Science, 2022, 57(17): 8154-66. [6] Si J, Gu J, Luan H, et al. Porous composite architecture bestows Fe-based glassy alloy with high and ultra-durable degradation activity in decomposing azo dye [J]. Journal of Hazardous Materials, 2020, 388: 122043. [7] Si J, Du C, Wang T, et al. Glass formation and soft magnetic properties of novel Fe-rich Fe-B-Ti-Zr bulk metallic glasses [J]. Journal of Alloys and Compounds, 2018, 741: 542-8. [8] Si J, Wu Y, Wang T, et al. Composition-controlled active-passive transition and corrosion behavior of Fe-Cr (Mo)-Zr-B bulk amorphous steels [J]. Applied Surface Science, 2018, 445: 496-504. [9] Si J, Chen X, Cai Y, et al. Corrosion behavior of Cr-based bulk metallic glasses in hydrochloric acid solutions [J]. Corrosion Science, 2016, 107: 123-32. [10] Si J, Wang T, Wu Y, et al. Cr-based bulk metallic glasses with ultrahigh hardness [J]. Applied Physics Letters, 2015, 106(25).
|