Synthesis and Characterization of Nanotubes from Misfit (LnS)(1+y)TaS2 (Ln=Pr, Sm, Gd, Yb) Compounds

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Details zur Publikation

Autorinnen und Autoren: Serra M, Stolovas D, Houben L, Popovitz-Biro R, Pinkas I, Kampmann F, Maultzsch J, Joselevich E, Tenne R
Zeitschrift: Chemistry - A European Journal
Jahr der Veröffentlichung: 2018
Band: 24
Heftnummer: 44
Seitenbereich: 11354-11363
ISSN: 0947-6539


The synthesis and characterization of nanotubes from misfit layered compounds (MLCs) of the type (LnS)(1+y)TaS2 (denoted here as LnS-TaS2; Ln=Pr, Sm, Gd, and Yb), not reported before, are described (the bulk compound YbS-LaS2 was not previously documented). Transmission electron microscopy and selected area electron diffraction showed that the interlayer spacing along the c axis decreased with an increase in the atomic number of the lanthanide atom, which suggested tighter interaction between the LnS layer and TaS2 for the late lanthanides. The Raman spectra of the tubules were studied and compared to those of the bulk MLC compounds. Similar to the bulk MLCs, the Raman spectra could be divided into the low-frequency modes (110-150cm(-1)) of the LnS lattice and the high-frequency modes (250-400cm(-1)) of the TaS2 lattice. The Raman spectra indicated that the vibrational lattice modes of the strained layers in the tubes were stiffer than those in the bulk compounds. Furthermore, the modes of the late lanthanides were higher in energy than those of the earlier lanthanides, which suggested larger charge transfer between the LnS and TaS2 layers for the late lanthanides. Polarized Raman measurements showed the expected binodal intensity profile (antenna effect). The intensity ratio of the Raman signal showed that the E-2g mode of TaS2 was more sensitive to the light-polarization effect than its A(1g) mode. These nanotubes are expected to reveal interesting low-temperature quasi-1D transport behavior.

FAU-Autorinnen und Autoren / FAU-Herausgeberinnen und Herausgeber

Maultzsch, Janina Prof. Dr.
Lehrstuhl für Experimentalphysik

Einrichtungen weiterer Autorinnen und Autoren

Technische Universität Berlin
Weizmann Institute of Science


Serra, M., Stolovas, D., Houben, L., Popovitz-Biro, R., Pinkas, I., Kampmann, F.,... Tenne, R. (2018). Synthesis and Characterization of Nanotubes from Misfit (LnS)(1+y)TaS2 (Ln=Pr, Sm, Gd, Yb) Compounds. Chemistry - A European Journal, 24(44), 11354-11363.

Serra, Marco, et al. "Synthesis and Characterization of Nanotubes from Misfit (LnS)(1+y)TaS2 (Ln=Pr, Sm, Gd, Yb) Compounds." Chemistry - A European Journal 24.44 (2018): 11354-11363.


Zuletzt aktualisiert 2018-04-09 um 13:08