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干净、均一的表面增强拉曼基底的制备和表征 被引量:3

Preparation and Characterization of Clean and Uniform Substrates for Surface-Enhanced Raman Spectroscopy
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摘要 采用盐酸羟胺种子生长法制备60 nm左右的粒径均一的金纳米粒子,通过在ITO上修饰3-氨基丙基-三甲氧基硅烷(APTMS)对金纳米粒子进行组装,得到组装密度较高、均一的表面增强拉曼光谱(SERS)基底;采用等离子体清洗再用醋酸溶液浸泡除去氧化层的方法,可获得干净的SERS基底,这种方法与其它基底除杂方法相比更为简单、操作性强且信号只衰减了20%。 Gold nanoparticles with uniform size and shape distribution were synthesized by hydroxylamine seed-mediated growing method. High density and uniform SERS (surface- enhanced Raman spectroscopy ) substrates were obtained by assembling Au nanoparticles on the indium tin oxide (ITO) substrates which had been modified with (3-aminopropyl) trimethoxysilane (APTMS). Clean SERS substrates have been obtained by cleaning the assembled substrate in Plasma cleaner followed by immersion in acetic acid to remove the surface oxides. This method to remove the contaminants on the surface appears to be very simple, which only lead to a decrease of signal by 20% .
出处 《光散射学报》 北大核心 2009年第4期295-299,共5页 The Journal of Light Scattering
基金 973项目(2009CB930703 2007CB935603) 国家自然科学基金(20673086 20825313 20827003)
关键词 金纳米粒子 表面增强拉曼光谱 基底 除杂 gold nanoparticles surface-enhanced Raman spectroscopy suhstrates contaminants
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参考文献18

  • 1Tian Z Q, Ren B, Wu D Y. Surface-enhanced Raman scattering: from noble to transition metals and from rough surfaces to ordered nanostructures [J]. J. Phys. Chem. B, 2002, 106:9463--9483.
  • 2Yu Q M, Golden G. Probing the protein orientation on charged self-assembled monolayers on gold nanohole arrays by SERS[J]. Langmuir, 2007, 23:8659--8662.
  • 3Alvarez-Puebla R, Cui B, Bravo-Vasquez J P, et al. Nanoimprintecl SERS-active substrates with tunable surface Plasmon resonances[J]. J. Phys. Chem. C, 2007, 111 (18) : 6720--6723.
  • 4Freeman R G, Grabar K C, Natan M J, et al. Self-assembled metal colloid monolayers: an approach to SERS substrates[J]. Science, 1995, 267 (5204) : 1627-- 1632.
  • 5Santhanam V, Liu J, Agarwal R, etal. Self-assembly of uniform monolayer arrays of nanoparticles[J]. Langmuir, 2003, 19: 7881--7887.
  • 6Natan M J. Concluding remarks - surface enhanced Raman scattering [J]. Faraday Discuss. , 2006, 132:321--328.
  • 7Lin X M, Ren B, Tian Z Q, et al. Surface-enhanced Raman spectroscopy - substrate related issues[J]. Anal. Bioanal. Chem., 2009, 394:1729 --1745.
  • 8Otto A. Raman spectra of (CN)^- adsorbed at a silver surface[J]. Surf. Sci., 1978, 75, (2): L392--396.
  • 9蔡志鹏,王波,贺廷超,张玲,莫育俊.对SERS衬底表面杂质的处理研究[J].光散射学报,2007,19(2):124-127. 被引量:3
  • 10Taylor C E, Garvey S D, Pemberton J E. Carbon contamination at silver surfaces: surface preparation procedures evaluated by Raman spectroscopy and X-ray photoelectron spectroscopy[J]. Anal. Chem. , 1996, 68(14): 2401--2408.

二级参考文献35

  • 1吴元菲,李剑锋,吴德印,任斌,田中群.胞嘧啶吸附在粗糙银和金电极上的表面增强拉曼光谱[J].光散射学报,2006,18(4):297-301. 被引量:12
  • 2贾廷见,李朋伟,尚治国,张玲,莫育俊.糠醛分子的拉曼光谱与红外光谱研究[J].光散射学报,2007,19(1):1-5. 被引量:25
  • 3贺廷超,贾廷见,杜亚冰,莫育俊.甲基橙在银镜上的表面增强拉曼光谱研究[J].光散射学报,2007,19(1):6-10. 被引量:8
  • 4Wang J,Thin Solid Films,1998年,327/329卷,591页
  • 5Zhu T,Thin Solid Films,1998年,327/329卷,595页
  • 6Zhu T,Chem Phys Lett,1997年,265期,334页
  • 7Wang J,Jpn J Appl Phys B,1996年,35卷,L1381页
  • 8Fleischmann M,Hendra P J,McQuillan A J.Raman spectra of pyridine adsorbed at a silver electrode[J].Chem.Phys.Lett.,1974,26 (2):163.
  • 9Murphy C J,Mahtab R,Caswell K,et al.Inorganic nanoparticles as optical sensors of DNA[J].P.Soc.Phto-Opt Ins.,2001,2(15):25.
  • 10Shang Z G,Dor N T,Yee T W,et al.A study of DFT and Surface Enhanced Raman Scattering in Silver Colloids for Thymine[J].J.Molecul.Struc.,2007,64 (1):826.

共引文献32

同被引文献64

  • 1曾祥照.浅谈对X射线实时成像图像的识别[J].无损检测,2005,27(1):41-41. 被引量:1
  • 2施玉珍,陈志春,林贤福.拉曼光谱与红外光谱无损检测技术新进展[J].分析化学,2005,33(2):272-276. 被引量:35
  • 3孙丽娜,原培新.X射线安检设备中探测技术研究[J].中国测试技术,2006,32(3):20-22. 被引量:16
  • 4蔡志鹏,王波,贺廷超,张玲,莫育俊.对SERS衬底表面杂质的处理研究[J].光散射学报,2007,19(2):124-127. 被引量:3
  • 5STORME PARIS I.REBIERE H.MATOGA M.CIVADE C,et al.Challenging near infrared spectroscopy discriminating ability for counterfeit Pharmaceuticals detection[J].Analytica Chimica Acta,2010,658(2):163-174.
  • 6CHENG HONGFEI,YANG JING,LIU QINFU,et al.A spectroscopic comparison of selected Chinese kaolinite,coal bearing kaolinite and halloysite桝 mid-infrared and near-infrared study[J].Spectrochimica Acta Part A:Molecular and Biomolecular Spectroscopy,2010,77(4):856-861.
  • 7KHANMOHAMMADI M,GARMARUDI A B,GHASEMI K,et al.Artificial neural network for quantitative determination of total protein in yogurt by infrared spectrometry[J].Microchemical Journal,2009,91(l):47-52.
  • 8OLTVEIRA DOS SANTOS E.MONTEIRO SANTANA SILVA A,DUARTE FRAGOSO W,et al.Determination of degree of polymerization of insulating paper using near infrared spectroscopy and multivariate calibration[J],Vibrational Spectroscopy,2010,52(2):154-157.
  • 9WU ZHONGCHEN,TAO LIN,ZHANG PENGYAN.et al.Diffuse reflectance mid-infrared Fourier transform spectroscopy (DRIFTS) for rapid identification of dried sea cucumber products from different geographical areas[J].Vibrational Spectroscopy,2010,53(2):222-226.
  • 10HEISE H M,KUCKUK R,BERECK A,et al.Mid-infrared diffuse reflectance spectroscopy of textiles containing finishing auxiliaries[J].Vibrational Spectroscopy,2004,35(2):213-218.

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