4.3 Article

Synthesis and electrical properties of Na2Ti3O7 nanoribbons

期刊

MICRO & NANO LETTERS
卷 6, 期 4, 页码 233-235

出版社

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/mnl.2011.0062

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  1. Henan Province Scientific and Technological Department [092102210198, 102102210439]
  2. Henan Province Education Department [2010B150002]

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Electrical properties of Na2Ti3O7 nanoribbons (NRs) sensitively depend on their structures, morphologies and sizes. The nanofield-effect transistors based on single NR are fabricated to evaluate the electronic transport characteristics. A convenient hydrothermal method is employed to synthesise the NRs, and the characterisations of morphology and crystal structure reveal that the NRs have the good crystallinity and uniformity with the width of 200-400 nm, the length >10 mu m and the growth direction of [001]. The atomic ratio of Na:Ti:O is estimated to be 2:3:7 from the energy-dispersive X-ray spectroscopy spectrum. The electronic characterisations demonstrate that the as-synthesised Na2Ti3O7 NRs have a lower electronic resistivity of 14 Omega cm, substantial p-type conductivity with a high mobility of 55.6 cm(2) V-1 S-1 and carrier concentration of 8.1 x 10(15) cm(-3). The high aspect ratio and good crystallinity result in the high mobility. The Na2Ti3O7 NRs with good p-type conductivity may have important potential applications in nanoelectronic devices.

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