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Results 1 to 25 of 116

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Second-order Raman study of double-wall carbon nanotubes under high pressurePAPAGELIS, K; ARVANITIDIS, J; CHRISTOFILOS, D et al.Physica status solidi. B. Basic research. 2007, Vol 244, Num 1, pp 116-120, issn 0370-1972, 5 p.Conference Paper

Direct experimental evidence of exciton-phonon bound states in carbon nanotubesPLENTZ, Flavio; RIBEIRO, Henrique B; JORIO, Ado et al.Physical review letters. 2005, Vol 95, Num 24, pp 247401.1-247401.4, issn 0031-9007Article

Exponential decay lifetimes of excitons in individual single-walled carbon nanotubesHAGEN, Axel; STEINER, Mathias; RASCHKE, Markus B et al.Physical review letters. 2005, Vol 95, Num 19, pp 197401.1-197401.4, issn 0031-9007Article

Steplike dispersion of the intermediate-frequency Raman modes in semiconducting and metallic carbon nanotubesFANTINI, C; JORIO, A; SOUZA, M et al.Physical review B. Condensed matter and materials physics. 2005, Vol 72, Num 8, pp 085446.1-085446.5, issn 1098-0121Article

Band-gap shift transition in the photoluminescence of single-walled carbon nanotubesFINNIE, P; HOMMA, Y; LEFEBVRE, J et al.Physical review letters. 2005, Vol 94, Num 24, pp 247401.1-247401.4, issn 0031-9007Article

Nanorod-Depolarized Dynamic Light Scattering in a Gelling LiquidSI CHEN; KRAUS, Tobias.Journal of physical chemistry. C. 2012, Vol 116, Num 31, pp 16766-16775, issn 1932-7447, 10 p.Article

Comparative high pressure Raman study of individual and bundled single-wall carbon nanotubesCHRISTOLLLOS, D; ARVANITIDIS, J; ANDRIKOPOULOS, K. S et al.Physica status solidi. B. Basic research. 2007, Vol 244, Num 1, pp 100-104, issn 0370-1972, 5 p.Conference Paper

Quantifying carbon-nanotube species with resonance Raman scatteringJORIE, A; SANTOS, A. P; RESASCO, D. E et al.Physical review B. Condensed matter and materials physics. 2005, Vol 72, Num 7, pp 075207.1-075207.5, issn 1098-0121Article

Chirality assignments in carbon nanotubes based on resonant Raman scatteringTHOMSEN, C; TELG, H; MAULTZSCH, J et al.Physica status solidi. B. Basic research. 2005, Vol 242, Num 9, pp 1802-1806, issn 0370-1972, 5 p.Conference Paper

Optical transition energies for carbon nanotubes from resonant Raman spectroscopy: Environment and temperature effectsFANTINI, C; JORIO, A; SOUZA, M et al.Physical review letters. 2004, Vol 93, Num 14, pp 147406.1-147406.4, issn 0031-9007Article

Surface-enhanced Raman scattering from the individual metallic single-walled carbon nanotubesZHENPING ZHOU; DONGYUN WAN; WEIYA ZHOU et al.Physica. E, low-dimentional systems and nanostructures. 2005, Vol 28, Num 4, pp 360-364, issn 1386-9477, 5 p.Article

Photoluminescence properties and photocatalytic activities of zirconia nanotube arrays fabricated by anodizationDONG FANG; ZHIPING LUO; SUQIN LIU et al.Optical materials (Amsterdam). 2013, Vol 35, Num 7, pp 1461-1466, issn 0925-3467, 6 p.Article

On the polarization-dependent Raman spectra of aligned carbon nanotubesKRAMBERGER, Christian; THURAKITSEREE, Theerapol; CHIASHI, Shohei et al.Applied physics. A, Materials science & processing (Print). 2012, Vol 109, Num 3, pp 509-513, issn 0947-8396, 5 p.Article

Polarization-dependent optical reflectivity in magnetically oriented carbon nanotube networksKAMARAS, K; RINZLER, A. G; TANNER, D. B et al.Physica status solidi. B. Basic research. 2006, Vol 243, Num 13, pp 3126-3129, issn 0370-1972, 4 p.Conference Paper

Characterizing the chirality distribution of single-walled carbon nanotube materials with tunable raman spectroscopySON, H. B; REINA, A; DRESSELHAUS, M. S et al.Physica status solidi. B. Basic research. 2006, Vol 243, Num 13, pp 3161-3165, issn 0370-1972, 5 p.Conference Paper

Thermal effects in Raman spectra of hexagonal boron nitride and nanotube-containing boron nitride sootARUTYUNYAN, N. R; OBRAZTSOVA, E. D; SILLY, M et al.Physica status solidi. B. Basic research. 2006, Vol 243, Num 13, pp 3316-3319, issn 0370-1972, 4 p.Conference Paper

Exciton resonances quench the photoluminescence of zigzag carbon nanotubesREICH, Stephanie; THOMSEN, Christian; ROBERTSON, John et al.Physical review letters. 2005, Vol 95, Num 7, pp 077402.1-077402.4, issn 0031-9007Article

Raman modes of index-identified freestanding single-walled carbon nanotubesMEYER, Jannik C; PAILLET, Matthieu; MICHEL, Thierry et al.Physical review letters. 2005, Vol 95, Num 21, pp 217401.1-217401.4, issn 0031-9007Article

Raman spectroscopy of iodine-doped double-walled carbon nanotubesCAMBEDOUZOU, J; SAUVAJOL, J.-L; RAHMANI, A et al.Physical review B. Condensed matter and materials physics. 2004, Vol 69, Num 23, pp 235422.1-235422.6, issn 1098-0121Article

Temperature-dependent photoluminescence from single-walled carbon nanotubesLEFEBVRE, J; FINNIE, P; HOMMA, Y et al.Physical review B. Condensed matter and materials physics. 2004, Vol 70, Num 4, pp 045419.1-045419.8, issn 1098-0121Article

Luminescence Quantum Yield of Single Gold NanorodsYORULMAZ, Mustafa; KHATUA, Saumyakanti; ZIJLSTRA, Peter et al.Nano letters (Print). 2012, Vol 12, Num 8, pp 4385-4391, issn 1530-6984, 7 p.Article

Development of the Tangential Mode in the Raman Spectra of SWCNT Bundles during Electrochemical ChargingKALBAC, M; KAVAN, L; DUNSCH, L et al.Nano letters (Print). 2008, Vol 8, Num 4, pp 1257-1264, issn 1530-6984, 8 p.Article

One-electron states and interband optical absorption in single-wall carbon nanotubesADAMYAN, Vadim; TISHCHENKO, Sergey.Journal of physics. Condensed matter (Print). 2007, Vol 19, Num 18, issn 0953-8984, 186206.1-186201.18Article

Raman spectroscopy of open-ended Single Wall Carbon Nanotubes under pressure : effect of the pressure transmitting mediumMERLEN, A; TOULEMONDE, P; BENDIAB, N et al.Physica status solidi. B. Basic research. 2006, Vol 243, Num 3, pp 690-699, issn 0370-1972, 10 p.Article

Charge transport through carbon nanotubes interacting with lightBALASUBRAMANIAN, Kannan; BURGHARD, Marko.Semiconductor science and technology. 2006, Vol 21, Num 11, issn 0268-1242, S22-S32Article

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