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[361] SSG,RB.Electrochemical preparation of platinum nanothorn assemblies with high surface enhanced Raman scattering activity.Chemical Communications,(39):4090-4092.
[362] YZL,RB.FDTD for plasmonics: Applications in enhanced Raman spectroscopy.Chinese Science Bulletin,2009,55(24):2635-2642.
[363] YZL,RB.Tunable SERS from aluminium nanohole arrays in the ultraviolet region.Chemical Communications,47(13):3909-3911.
[364] TZQ,RB.SERS from transition metals and excited by ultraviolet light.Surface-Enhanced Raman Scattering: Physics and Applications,103125-146.
[365] TZQ,RB.Surface-enhanced Raman scattering from transition metals with special surface morphology and nanoparticle shape.Faraday Discussions,132159-170.
[366] TZQ,RB.Extending SERS study to transition metal electrode and nanoparticle surfaces.Abstracts of Papers of the American Chemical Society,22579-COLL.
[367] TZQ,RB.Expanding generality of surface-enhanced Raman spectroscopy with borrowing SERS activity strategy.Chemical Communications,2007,(34):3514-3534.
[368] RB.Electrochemical synthesis and analysis of SERS activity of gold nanoparticles films.Chemical Journal of Chinese Universities-Chinese,2005,26(9):1732-1734.
[369] YZL,RB.Near-field coupling and SERS effects of palladium nanoparticle dimers.Chinese Science Bulletin,2009,55(26):2930-2936.
[370] RB,TZQ,Surface-enhanced Raman scattering in the ultraviolet spectral region: UV-SERS on rhodium and ruthenium electrodes.Journal of the American Chemical Society,2003,125(32):9598-9599.
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