累计在Adv Opt Mater, Carbon, Appl. Surf. Sci等期刊发表论文65篇,近期发表论文列表:
(1)Lu, J.Q.;Xu Dai.;Huang, N.;Jiang, X.*;Yang, B.* (通讯作者); One-dimensional diamond nanostructures: Fabrication, properties and applications. Carbon, 2024, 223,119020.
(2)Lu, J.Q.;Yang, B.* (通讯作者);Li, H. N.; Guo, X. K.; Huang, N.; Liu, L.S.; Jiang, X.*Revealing impurity evolution in silicon-doped diamond film via thermal oxidation.Carbon,2023,203,37-346.
(3)Yang, B.* (通讯作者); Yu, B.; Lu, J.Q.; Li, H. N.; ZhaiZ.F.;Guo, X. K.; Huang, N.; Liu, L.S.; Jiang, X.*Tailoring optical emission of silicon-vacancy centers in two-dimensional diamond nanosheets via a two-step oxidation approach.Functional Diamond, 2023,3,2211074.
(4)Guo, X. K.; Yang, B.* (通讯作者); Lu, J. Q.; Li, H. N.; Huang, N.; Liu, L.; Jiang, X.* Electrical tailoring of the photoluminescence of silicon-vacancy centers in diamond/silicon heterojunctions, J. Mater. Chem. C, 2022, 10, 9334-9343.
(5)Li, H. N.; Yang, B.* (通讯作者); Yu, B.; Huang, N.; Liu, L.S.; Lu, J.Q.; Jiang, X.* Tailoring the sp2/sp3 carbon composition for surface enhancement in Raman scattering, Appl. Surf. Sci. 2022, 599: 153966.
(6)Lu, J. Q.; Yang, B.* (通讯作者); Yu, B.; Li, H. N; Huang, N.; Liu, L.; Jiang, X.* Fabrication of ordered diamond nanoneedle arrays containing high-brightness silicon-vacancy centers, Adv. Opt. Mater., 2021, 21001427:1-11.
(7)Yang, B.* (第一作者,通讯作者); Li, H. L.; Yu, B.; Lu, J. Q.; Huang, N.; Liu, L. S.; Jiang, X.* Bright Silicon vacancy centers in diamond/SiC composite films, Carbon, 2021,171,455-463.
(8)Yang, B.* (第一作者,通讯作者); Yu, B.; Li, H. L.; Huang, N.; Liu, L. S.; Jiang, X.*, Enhanced and switchable silicon-vacancy photoluminescence in air-annealed nanocrystalline diamond films, Carbon, 2020,156,242-252.
(9)Yu, B.; Yang, B.* (通讯作者); Li, H.; Lu, J.; Huang, N.; Liu, L.; Jiang, X.* Effect of surface oxidation on photoluminescence of silicon vacancy color centers in the nanocrystalline diamond films. Appl. Surf. Sci. 2021, 552, 149475.
(10)Li, H. N.; Yang, B.* (通讯作者); Yu, B.; Huang, N.; Liu, L.; Lu, J.; Jiang, X.* Graphene-coated Si nanowires as substrates for surface-enhanced Raman scattering. Appl. Surf. Sci. 2021, 541, 148486.
(11)Long, W. J.; Li, H. N.; Yang, B.* (通讯作者); Huang, N.; Liu, L. S.; Jiang, X.*; Superhydrophobic diamond-coated Si nanowires for application of anti-biofouling, J. Mater. Sci. Technol., 2020, 48, 1-8.