References
391
82. R. Cuscó, E. Alarcón Lladó, J. Ibáñez, L. Artús, J. Jiménez, B. Wang, M.J. Callahan, Temperature dependence of Raman scattering in ZnO. Phys. Rev. B 75(16), 165202–165213
(2007)
83. Y.N. Hwang, S.H. Park, D. Kim, Size-dependent surface phonon mode of CdSe quantum dots.
Phys. Rev. B 59(11), 7285 (1999)
84. B. Palpant, H. Portales, L. Saviot, J. Lerme, B. Prevel, M. Pellarin, E. Duval, A. Perez,
M. Broyer, Quadrupolar vibrational mode of silver clusters from plasmon-assisted Raman
scattering. Phys. Rev. B 60(24), 17107–17111 (1999)
85. M. Fujii, T. Nagareda, S. Hayashi, K. Yamamoto, Low-frequency Raman-scattering from
small silver particles embedded in SiO 2 thin-films. Phys. Rev. B 44(12), 6243–6248 (1991)
86. H. Lamb, On the variations of an elastic sphere. Lond. Math. Soc. Proc. 13, 233–256 (1882)
87. M.A. Omar, Elementary Solid State Physics: Principles and Applications (Addison-Wesley,
New York, 1993)
88. J. Zi, K.M. Zhang, X.D. Xie, Microscopic calculations of Raman scattering from acoustic
phonons confined in Si nanocrystals. Phys. Rev. B 58(11), 6712–6715 (1998)
89. G.A. Narvaez, J. Kim, J.W. Wilkins, Effects of morphology on phonons in nanoscopic silver
grains. Phys. Rev. B 72(15), 155411 (2005)
90. G. Scamarcio, M. Lugara, D. Manno, Size-dependent lattice contraction in CdS1-xSex
nanocrystals embedded in glass observed by Raman-scattering. Phys. Rev. B 45(23),
13792–13795 (1992)
91. L.H. Liang, C.M. Shen, X.P. Chen, W.M. Liu, H.J. Gao, The size-dependent phonon frequency
of semiconductor nanocrystals. J. Phys. Condens. Matter 16(3), 267–272 (2004)
92. A. Dieguez, A. Romano-Rodriguez, A. Vila, J.R. Morante, The complete Raman spectrum of
nanometric SnO 2 particles. J. Appl. Phys. 90(3), 1550–1557 (2001)
93. Z. Iqbal, S. Veprek, Raman-scattering from hydrogenated microcrystalline and amorphoussilicon. J. Phys. C Solid State Phys. 15(2), 377–392 (1982)
94. E. Anastassakis, E. Liarokapis, Polycrystalline Si under strain: Elastic and lattice-dynamical
considerations. J. Appl. Phys. 62, 3346–3352 (1987)
95. H. Richter, Z.P. Wang, L. Ley, The one phonon Raman spectrum in microcrystalline silicon.
Solid State Commun. 39(5), 625–629 (1981)
96. I.H. Campbell, P.M. Fauchet, The effects of microcrystal size and shape on the one phonon
Raman spectra of crystalline semiconductors. Solid State Commun. 58(10), 739–741 (1986)
97. H.C. Choi, Y.M. Jung, S.B. Kim, Size effects in the Raman spectra of TiO 2 nanoparticles.
Vib. Spectrosc. 37(1), 33–38 (2005)
98. X. Wang, D.M. Huang, L. Ye, M. Yang, P.H. Hao, H.X. Fu, X.Y. Hou, X.D. Xie, Pinning of
photoluminescence peak positions for light-emitting porous silicon—an evidence of quantumsize effect. Phys. Rev. Lett. 71(8), 1265–1267 (1993)
99. J.L. Andujar, E. Bertran, A. Canillas, C. Roch, J.L. Morenza, Influence of pressure and radiofrequency power on deposition rate and structural-properties of hydrogenated amorphoussilicon thin-films prepared by plasma deposition. J. Vacuum Sci. Technol. Vac. Surf. Films
9(4), 2216–2221 (1991)
100. L. Banyai, S.W. Koch, Semiconductor Quantum Dots (World Scientific, Singapore, 1993)
101. Y.N. Hwang, S.H. Shin, H.L. Park, S.H. Park, U. Kim, H.S. Jeong, E.J. Shin, D. Kim, Effect
of lattice contraction on the Raman shifts of CdSe quantum dots in glass matrices. Phys. Rev.
B 54(21), 15120–15124 (1996)
102. X. Yang, J. Li, Z. Zhou, Y. Wang, W. Zheng, C.Q. Sun, Frequency response of graphene
phonons to heating and compression. Appl. Phys. Lett. 99(13), 133108 (2011)
103. G. Ouyang, C.Q. Sun, W.G. Zhu, Pressure-stiffened Raman phonons in group III nitrides: a
local bond average approach. J. Phys. Chem. B 112(16), 5027–5031 (2008)
104. J.L. Hu, W.P. Cai, C.C. Li, Y.J. Gan, L. Chen, In situ x-ray diffraction study of the thermal
expansion of silver nanoparticles in ambient air and vacuum. Appl. Phys. Lett. 86(15), 151915
(2005)
105. L. Li, Y. Zhang, Y.W. Yang, X.H. Huang, G.H. Li, L.D. Zhang, Diameter-depended thermal
expansion properties of Bi nanowire arrays. Appl. Phys. Lett. 87(3), 031912 (2005)
Précédent

- 402/517

Suivant