Диссертация (1149201), страница 15
Текст из файла (страница 15)
Structure-potential dependence of adsorbed enzymes and aminoacids revealed by the surface enhanced Raman effect / Vidugiris G.J.,Gudavicius A.V., Razumas V.J. Kulys J.J. // Eur. Biophys. J. – 1989. – №17. –p. 19.77.Kleinman, S.L. Single-molecule surface-enhanced Raman spectroscopy ofcrystal violet isotopologues: theory and experiment. / S.L. Kleinman , E. Ringe, N. Valley , K.L. Wustholz , E.
Phillips, K.A. Scheidt , G.C. Schatz , R.P. VanDuyne // J. Am. Chem. Soc. – 2011. – № 133. – р. 4115.12278.Rodríguez-Lorenzo, L. Zeptomol detection through controlled ultrasensitivesurface-enhanced Raman scattering. / L. Rodríguez-Lorenzo, R.A. ÁlvarezPuebla , I. Pastoriza-Santos , S. Mazzucco , O.
Stéphan , M. Kociak , L.M. LizMarzán, F.J. García de Abajo // J. Am. Chem. Soc. – 2009. – № 131. – р. 4616.79.Li, J.F. Shell-isolated nanoparticle-enhanced Raman spectroscopy / J.F. Li, Y.F.Huang, Y. Ding, Z.L. Yang, S.B. Li, X.S. Zhou, F.R. Fan, W. Zhang, Z.Y.Zhou, D.Y. Wu, B. Ren, Z.L. Wang, Z.Q. Tian // Nature. – 2010. – № 464. – р.392.80.Liu, H.
Single molecule detection from a large-scale SERS-active Au79Ag21substrate / H. Liu, L. Zhang, X. Lang, Y. Yamaguchi, H. Iwasaki, Y. Inouye, Q.Xue, M. Chen // Sci. Rep. – 2011. – № 1. – р. 112.81. Dinish, U. S. Actively Targeted In Vivo Multiplex Detection of IntrinsicCancer Biomarkers Using Biocompatible SERS Nanotags / U.S.
Dinish, G.Balasundaram, Y.-T. Chang, M.Olivo // Sci. Rep. – 2013. – № 4. - p. 407582.Korchev, S Polymer initiated photogeneration of silver nanoparticles inSPEEK/PVA films: direct metal photopatterning. / S. Korchev, M.J. Bozack,B.L. Slaten, G. Mills // J. Am. Chem. Soc. – 2004. – № 126(1). – р. 10.83.Inouye, H Ultrafast optical switching in a silver nanoparticle system / H.Inouye, K. Tanaka, I. Tanahashi, T. Hattori, H. Kanatsuka // Jpn. J.
Appl. Phys.– 2000. – № 39. – р. 5132.84.Dirix, Y. Oriented pearlnecklace arrays of metallic nanoparticles in polymers: anew route to polarization dependent color filters / Y. Dirix, C. Bastiaansen, W.Caseri, P. Smith // Adv. Mater. – 1999. – № 11. – р. 223.85.Avasthi, D.K. Synthesis of metal-polymer nanocomposite for opticalapplications / D.K. Avasthi, Y.K. Mishra, D. Kabiraj, N.P. Lalla, J.C. Pivin //Nanotechnology.
– 2007. – № 18(12). – р. 125604.86.Mishra, Y.K. Synthesis and characterization of Ag nanoparticles in silica matrixby atom beam sputtering / Y.K. Mishra, S. Mohapatra, D. Kabiraj, B. Mohanta,N.P. Lalla, J.С. Pivin // Scr. Mater. – 2007. – № 56(7). – р. 629.87.Mohapatra, S Synthesis of gold-silicon core-shell nanoparticles with tunablelocalized surface plasmon resonance / S. Mohapatra, Y.K.
Mishra, D.K.Avasthi, D. Kabiraj, J. Ghatak, S. Verma // Appl. Phys. Lett. – 2008. – № 92. –р. 103105.88.Tang, S. Shape evolution and thermal stability of Ag nanoparticles on sphericalSiO2 substrates / S. Tang, S. Zhu, H. Lu, X.
Meng // J. Solid State Chem. –2008. –№ 181(3). – р. 587.89.Liu, J. B. Synthesis of Bimetallic Nanoshells by an Improved ElectrolessPlating Method / J. B. Liu, W. Dong, P. Zhan, S. Z. Wang, J. H. Zhang and Z.L. Wang // Langmuir. – 2005. – № 21. – р. 1683.12390.Oldenburg, S. J.
Nanoengineering of optical resonances / S. J. Oldenburg, R. D.Averitt, S. L. Westcott, N. J. Halas // Chem. Phys. Lett. – 1998. – № 288. – р.243.91.Wang, W. Photochemical incorporation of silver quantum dots in monodispersesilica colloids for photonic crystal applications / W. Wang, S. A. Asher // J.Am. Chem. Soc. – 2001. – № 123. – р. 12528.92.J Kim, J. H. Preparation, Characterization, and Optical Properties of Gold,Silver, and Gold−Silver Alloy Nanoshells Having Silica Cores / J.
H. Kim, W.W. Bryan, T. R. Lee // Langmuir. – 2008. – № 24. – р. 11147.93.Tovmachenko, O. G. Fluorescence Enhancement by Metal-Core/Silica-ShellNanoparticles / O. G. Tovmachenko, C. Graf, D. J. van den Heuvel, A. vanBlaaderen, H. C. Gerritsen // Adv. Mater. – 2006. – № 18. – р. 91.94.Robertson, J. Mechanical properties and coordinations of amorphous carbons /J.
Robertson // Phys. Rev. Lett. – 1992. – № 68 – р. 220.95.Morrison, M.L. Electrochemical and antimicrobial properties of diamond likecarbon-metal nanocomposite films / M.L. Morrison, R.A. Buchanan, P.K. Liaw,C.J. Berry, R.L. Brigmon, L. Reister // Diam.
Relat. Mater. – 2006. – № 15. – р.138.96.Babonneau, D. Silver nanoparticles encapsulated in carbon cages obtained byco-sputtering of the metal and graphite / D. Babonneau, T. Cabico’h, A.Naudon, J.C. Girard, M.F. Deanot // Surf. Sci. – 2009. – № 409. – р. 35897.Singhal, R. Blue-Shifted SPR of Au Nanoparticles with Ordering of Carbon byDenseIonization and Thermal Treatment / R. Singhal, D. Kabiraj, P.
K. Kulriya,J. C. Pivin, R. Chandra, D. K. Avasthi // Plasmonics. – 2013. - № 8. – р. 295.98.Robertson, J. (1987) Electronic and atomic structure of amorphous carbon/ J.Robertson, E.P. O’Reilly // Phys. Rev. B. – 1987. – № 35. – р. 2946.99.Wagner, J. Resonant Raman scattering of amorphous carbon andpolycrystalline diamond films / J.
Wagner, M. Ramsteiner, C. Wild, P. Koidl //Phys. Rev. B. – 1989. – № 40. – р. 1817.100. Tuinstra, F. (1970) Raman spectrum of graphite / F. Tuinstra, J.L. Koenig //J. Chem. Phys. – 1970. – № 53. – р. 1126.101. Ferrai, A.C. Interpretation of Raman spectra of disordered and amorphouscarbon / A.C. Ferrai, J. Robertson // Phys. Rev. B. – 2000. – № 61(20).
– р.14095102. Diamond-like carbon / J. Robertson // Pure. Appl. Chem. – 1994. – № 66(9). – р. 1789.103. Angus, J.C. (1988) Low-pressure, metastable growth of diamond and“diamond like” phases / J.C. Angus, C.C. Hayman // Science. – 1988. – № 241.– р. 913.124104. Kabiraj, D. (2006) Atom beam sputtering setup for growth of metal particlesin silica / D.Kabiraj, S.R. Abhilash, V. Lionel, N.
Cinausero, J.C. Pivin, D.K.Avashti // Nucl. Instr. Meth. Phys. Res. B. – 2006. – № 244. – р. 100.105. Lee, J. H. Facile preparation of highly-scattering metal nanoparticle-coatedpolymer microbeads and their surface plasmon resonance / J. H. Lee, M. A.Mahmoud, V. Sitterle, J. Sitterle and J. C. Meredith // J. Am.
Chem. Soc. –2009. – № 131. – р. 5048.106. Wang Y. J. Nanoporous colloids: building blocks for a new generation ofstructured materials / Y. J. Wang, A. D. Price and F. Caruso // J. Mater. Chem.– 2009. – № 19. – р. 6451.107. Teng, Z. G. Highly magnetizable superparamagnetic iron oxidenanoparticles embedded mesoporous silica spheres and their application forefficient recovery of DNA from agarose gel / Z.
G. Teng, J. Li, F. Yan, R. Zhaoand W. S. Yang // J. Mater. Chem. – 2009. – № 19. – р. 1811.108. Kim, S. W. Fabrication of Hollow Palladium Spheres and Their SuccessfulApplication to the Recyclable Heterogeneous Catalyst for Suzuki CouplingReactions / S. W. Kim, M. Kim, W. Y. Lee and T.
Hyeon // J. Am. Chem. Soc.– 2002. – № 124. – р. 7642.109. Liang, H. P. Pt Hollow Nanospheres: Facile Synthesis and EnhancedElectrocatalysts / H. P. Liang, H. M. Zhang, J. S. Hu, Y. G. Guo, L. J. Wang, C.L. Bai // Angew. Chem. Int. Ed. – 2004. – № 43. – р. 1540.110. Nakamura, T. Direct synthesis of monodispersed thiol-functionalizednanoporous silica spheres and their application to a colloidal crystal embeddedwith gold nanoparticles / T.
Nakamura, Y. Yamada and K. Yano // J. Mater.Chem. – 2007. – № 17. – р. 3726.111. Cao, Y. C. Preparation of Au nanoparticles-coated polystyrene beads and itsapplication in protein immobilization / Y. C. Cao, Z. Wang, X. Jin, X. F. Hua,M. X. Liu and Y. D. Zhao // Colloids Surf. A. – 2009. – № 334. – р. 53.112.
Tang, S. C. Carbon Spheres with Controllable Silver Nanoparticle Doping /S. C. Tang, S.Vongehr, X. K. Meng // J. Phys. Chem. C. – 2010. – № 114. – р.977.113. Joo, S. H. Thermally stable Pt/mesoporous silica core–shell nanocatalystsfor high-temperature reactions / S. H. Joo, J. Y. Park, C. K.
Tsung, Y. Yamada,P. D. Yang and G. A. Somorjai // Nat. Mater. – 2009. – № 8. – р. 126.114. Tang, S. C. Ultrasonic electrodeposition of silver nanoparticles on dielectricsilica spheres / S. C. Tang, Y. F. Tang, F. Gao, Z. G. Liu and X. K. Meng //Nanotechnology. – 2007.
– № 18. – р. 295607.125115. Liu, J. H. Synergistic Effect in an Au−Ag Alloy Nanocatalyst: COOxidation / J. H. Liu, A. Q. Wang, Y. S. Chi, H. P. Lin and C. Y. Mou // J.Phys. Chem. B. – 2005. – № 109. – р. 40.116. Link, S. Alloy Formation of Gold−Silver Nanoparticles and the Dependenceof the Plasmon Absorption on Their Composition / S. Link, Z. L.
Wang and M.A. El-Sayed // J. Phys. Chem. B. – 1999. – № 103. – р. 3529.117. Seo, D. Ag−Au−Ag Heterometallic Nanorods Formed through DirectedAnisotropic Growth / D. Seo, C. I. Yoo, J. Jung, H. Song // J. Am. Chem. Soc.– 2008. – № 130. – р. 2940.118. Radziuk, D. Sonochemical Design of Engineered Gold−Silver Nanoparticles/ D. Radziuk, D. Shchukin, H. Mohwald // J. Phys. Chem. C. – 2008. – № 112.– р. 2462.119. Schierhorn, M. Synthesis of Bimetallic Colloids with Tailored IntermetallicSeparation / M.
Schierhorn, L. M. Liz-Marzan // Nano Lett. – 2002. – № 2. – р.13.120. Cakan, R. D. Hydrothermal carbon spheres containing silicon nanoparticles:synthesis and lithium storage performance / R. D. Cakan, M. Titirici, M.Antonietti, G. L. Cui, J. Maier and Y. S. Hu // Chem. Commun. – 2008. – №32. – р. 3759.121. Chen, Z. Preparation of Metallodielectric Composite Particles withMultishell Structure / Z.
Chen, Z. L. Wang, P. Zhan, J. H. Zhang, W. Y. Zhang,H. T. Wang, N. B. Ming // Langmuir. – 2004. – № 20. – р. 3042.122. Perez-Moral, N. Molecularly Imprinted Multi-Layer Core-ShellNanoparticles – A Surface Grafting Approach / N. Perez-Moral, A. G. Mayes //Macromol. Rapid Commun. – 2007 – № 28 – р. 2170.123.
Stoeva, S. I. Three-Layer Composite Magnetic Nanoparticle Probes forDNA / S. I. Stoeva, F. W. Huo, J. S. Lee and C. A. Mirkin // J. Am. Chem. Soc.– 2005. – № 127. – р. 15362.124. Zhu, S. P. Monodisperse Silver Nanoparticles Synthesized by a MicrowaveAssisted Method / S. P. Zhu, S.
C. Tang, X. K. Meng // Chin. Phys. Lett. –2009. – № 26. – р. 078101.125. Schwartzberg, A. M. Synthesis, Characterization, and Tunable OpticalProperties of Hollow Gold Nanospheres / A. M. Schwartzberg, T. Y. Olson, C.E. Talley, J. Z. Zhang // J. Phys. Chem. B. – 2006. – № 110. – р. 19935.126. Губин, С.П.
Получение, строение и свойства магнитных материалов наоснове кобальтсодержащих наночастиц / С.П. Губин, Ю.А. Кокшаров //Неорганические материалы. – 2002. – Том 38. – С. 1287.127. Елисеев, А.А. Функциональные наноматериалы / А.А. Елисеев, А.В.Лукашин, под ред. Ю.Д. Третьякова. – М.:ФИЗМАТЛИТ, 2010. – 456 с.126128. Образование наночастиц при лазерной абляции металлов в жидкостях /Ф. Бозон-Вердюра, Р.













