光散射学报, 2017, 29 (3): 216, 网络出版: 2017-11-07  

纳米银沉积在不同基底上的表面增强拉曼效果

Substrates of Silver Nanoparticles on Different Plates for Surface Enhanced Raman Spectroscopy
作者单位
中国计量大学 光学与电子科技学院,杭州310018
引用该论文

赵淑慧, 李莎莎, 戚海艳, 陈华才. 纳米银沉积在不同基底上的表面增强拉曼效果[J]. 光散射学报, 2017, 29(3): 216.

ZHAO Shuhui, LI Shasha, QI Haiyan, CHEN Huacai. Substrates of Silver Nanoparticles on Different Plates for Surface Enhanced Raman Spectroscopy[J]. The Journal of Light Scattering, 2017, 29(3): 216.

参考文献

[1] Noh M S,Jun B H,Kim S,et al.Magnetic surface-enhanced Raman spectroscopic (M-SERS) dots for the identification of bronchioalveolar stem cells in normal and lung cancer mice[J].Biomaterials,2009,30(23-24):3915.

[2] Virkler K,Lednev I K.Forensic body fluid identification:The Raman spectroscopic signature of saliva[J].Analyst,2010,135:512-517.

[3] 朱志良,郜俊影,李风亭,等.L-天冬氨酸在银胶体中吸附状态的表面增强拉曼光谱研究[J].光谱学与光谱分析,2004,24(1):68-70.(Zhu Zhiliang,Gao Junying,Li Fengting,et al.The study of L-aspartic acid on silver sol by surface enhanced Raman scattering[J].Spectroscopy and Spectral Analysis,2004,24(1):68-70.)

[4] Cialla D,Mrz A,Bhme R,et al.Surface-enhanced Raman spectroscopy(SERS):progress and trends.[J].Anal Bioanal Chem,2012,403(1):27-54.

[5] Yamamoto Y S,Ozaki Y,Itoh T.Recent progress and frontiers in the electromagnetic mechanism of surface-enhanced Raman scattering[J].J Photoch Photobio C,2014,21:81-104.

[6] Huang Y F,Wu D Y,Zhu H P,et al.Surface-enhanced Raman spectroscopic study of p-aminothiophenol.[J].Phys Chem Chem Phys,2012,14(24):8485-8497.

[7] Xia Y,Xia X,Peng H C.ChemInform Abstract:shape-controlled synthesis of colloidal metal nanocrystals:thermodynamic versus kinetic products.[J].J Am Chem Soc,2015,137(25):7947-7966.

[8] Chen M,Wang C,Wei X,et al.Rapid synthesis of silver nanowires and network structures under cuprous oxide nanospheres and application in surface-enhanced Raman scattering[J].J Phys Chem C,2013,117(26):566-568.

[9] Mohapatra S,Siddhanta S,Kumar D R, et al.Facile and green synthesis of SERS active and ferromagnetic silver nanorods[J].Eur J Inorg Chem,2010,2010(31):4969-4974.

[10] Zhang T,Zhang L,Yang S,et al.Shape-controlled synthesis and applications of silver nano-particles[J].Rare Metal Mat Eng,2007,36(8):1495-1499.

[11] Wen X,Xie Y T,Mak M W,et al.Dendritic nanostructures of silver:facile synthesis,structural characterizations,and sensing applications[J].Langmuir,2006,22(10):4836-42.

[12] Guerrini L,Graham D.Cheminform abstract:molecularly-mediated assemblies of plasmonic nanoparticles for surface-enhanced Raman spectroscopy applications[J].ChemInform,2012,41(21):7085-7107.

[13] Zhang Y L,Yang P,Zhang L.Size- and shape-tunable silver nanoparticles created through facile aqueous synthesis[J].J Nanopart Res,2013,15(1):1329.

[14] 王重阳,乔玄玄,孙爱华,等.TiO2-AgNPs表面增强喇曼基底的制备及其活性[J].光子学报,2016,45(5):43-48.(Wang Chongyang,Qiao Xuanxuan,Sun Aihua,et al.Preparation of TiO2-AgNPs surface enhanced Raman basal and its active research[J].Acta Photonica Sinica,2016,45(5):43-48)

[15] Rycenga M,Xia X,Moran C H,et al.Generation of hot spots with silver nanocubes for single-molecule detection by surface-enhanced Raman scattering[J].Angew Chem Int Edit,2011,50(24):5473-5477.

[16] Zheng H,Ni D,Yu Z, et al.Fabrication of flower-like silver nanostructures for rapid detection of caffeine using surface enhanced Raman spectroscopy[J].Sensor Actuat B-Chem,2016,231:423-430.

[17] 王永强,王海燕,马省,等.Ag/Si-NPA基底上共吸附R6G和CV的表面增强拉曼散射[J].高等学校化学学报,2012,33(6):1306-1311.(Wang Yongqiang,Wang Haiyan,Ma Sheng,et al.Surface-enhanced Raman scattering of rhodamine 6G and crystal violet co-adsorbed on Ag/Si-NPA[J].Chemical Journal of Chinese Universities,2012,33(6):1306-1311.)

赵淑慧, 李莎莎, 戚海艳, 陈华才. 纳米银沉积在不同基底上的表面增强拉曼效果[J]. 光散射学报, 2017, 29(3): 216. ZHAO Shuhui, LI Shasha, QI Haiyan, CHEN Huacai. Substrates of Silver Nanoparticles on Different Plates for Surface Enhanced Raman Spectroscopy[J]. The Journal of Light Scattering, 2017, 29(3): 216.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!