Published September 5, 2007 | Version v1
Journal article

Low-energy vibrational excitations of Mo6S3I6 nanowires revealed by low-temperature specific heat

  • 1. Institut Neel, CNRS and Universite Joseph Fourier, BP 166, F-38042, Grenoble Cedex 9 (France)
  • 2. Institute of Physics, POB 304, Hr-10 001 Zagreb (Croatia)
  • 3. Mo6 d.o.o., Teslova 30, 1000 Ljubljana (Slovenia)

Description

We report on measurements of the low-temperature heat capacity of Mo6S3I6 nanowire-network samples in the form of a pressed pellet under different conditions of annealing. In the temperature (T) range of liquid He4 and below, specific heat is dominated by three contributions: (i) phonons, for T>2 K, (ii) a nuclear hyperfine contribution, below 0.3 K, and (iii) a series of Schottky anomalies for 2 K>T>0.1 K. In pristine samples, the phonon contribution varies as T2.6, which indicates a strongly anisotropic atomic structure. In the sample annealed at 800 deg. C, this term varies as T2.3, in agreement with a more one-dimensional (1D) structure, consistent with the transport properties. In comparison to other quasi-1D compounds, the departure from the 3D limit (corresponding to the usual T3 Debye law) is here very large, indicating a considerably loose interchain connection. We discuss the influence of stoichiometric disorder, especially the role of the position of the iodine atoms in the structure in both kinds of samples, the impact of topological imperfections and the possible origin of the observed Schottky anomalies

Additional details

Identifiers

DOI
10.1088/0957-4484/18/35/355704;
PII
S0957-4484(07)48625-1;

Publishing Information

Journal Title
Nanotechnology (Print)
Journal Volume
18
Journal Issue
35
Journal Page Range
p. 355704
ISSN
0957-4484