English

Poly-MTO, {(CH_3)_{0.92} Re O_3}_\infty, a Conducting Two-Dimensional Organometallic Oxide

Materials Science 2007-05-23 v1 Strongly Correlated Electrons

Abstract

Polymeric methyltrioxorhenium, {(CH_{3})_{0.92}ReO_{3}}_{\infty} (poly-MTO), is the first member of a new class of organometallic hybrids which adopts the structural pattern and physical properties of classical perovskites in two dimensions (2D). We demonstrate how the electronic structure of poly-MTO can be tailored by intercalation of organic donor molecules, such as tetrathiafulvalene (TTF) or bis-(ethylendithio)-tetrathiafulvalene (BEDT-TTF), and by the inorganic acceptor SbF3_3. Integration of donor molecules leads to a more insulating behavior of poly-MTO, whereas SbF3_3 insertion does not cause any significant change in the resistivity. The resistivity data of pure poly-MTO is remarkably well described by a two-dimensional electron system. Below 38 K an unusual resistivity behavior, similar to that found in doped cuprates, is observed: The resistivity initially increases approximately as ρ\rho \sim ln(1/T(1/T) before it changes into a T\sqrt{T} dependence below 2 K. As an explanation we suggest a crossover from purely two-dimensional charge-carrier diffusion within the \{ReO2_2\}_{\infty} planes at high temperatures to three-dimensional diffusion at low temperatures in a disorder-enhanced electron-electron interaction scenario (Altshuler-Aronov correction). Furthermore, a linear positive magnetoresistance was found in the insulating regime, which is caused by spatial localization of itinerant electrons at some of the Re atoms, which formally adopt a 5d15d^1 electronic configuration. X-ray diffraction, IR- and ESR-studies, temperature dependent magnetization and specific heat measurements in various magnetic fields suggest that the electronic structure of poly-MTO can safely be approximated by a purely 2D conductor.

Keywords

Cite

@article{arxiv.cond-mat/0512544,
  title  = {Poly-MTO, {(CH_3)_{0.92} Re O_3}_\infty, a Conducting Two-Dimensional Organometallic Oxide},
  author = {R. Miller and E. -W. Scheidt and G. Eickerling and C. Helbig and F. Mayr and R. Herrmann and W. Scherer and H. -A. Krug von Nidda and V. Eyert and P. Schwab},
  journal= {arXiv preprint arXiv:cond-mat/0512544},
  year   = {2007}
}

Comments

15 pages, 16 figures, 2 tables