96 research outputs found

    Cu codoping control over magnetic precipitate formation in ZnCoO nanowires

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    Using electrodeposition, we have grown nanowires of ZnCoO with Cu codoping concentrations varying from 4-10 at.%, controlled only by the deposition potential. We demonstrate control over magnetic Co oxide nano-precipitate formation in the nanowires via the Cu concentration. The different magnetic behavior of the Co oxide nano-precipitates indicates the potential of ZnCoO for magnetic sensor applications.Comment: 5 pages, 5 figure

    Thermal Instability of Porous Gold Nanowires

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    Antimony Nanowire Networks

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    Quantum size effects in a one-dimensional semimetal

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    We study theoretically the quantum size effects in a one-dimensional semimetal by a Boltzmann transport equation. We derive analytic expressions for the electrical conductivity, Hall coefficient, magnetoresistance, and the thermoelectric power in a nanowire. The transport coefficients of semimetal oscillate as the size of the sample shrinks. Below a certain size the semimetal evolves into a semiconductor. The semimetal-semiconductor transition is discussed quantitatively. The results should make a theoretical ground for better understanding of transport phenomena in low-dimensional semimetals. They can also provide useful information while studying low-dimensional semiconductors in general.Comment: 5 pages in PDF; LaTeX sourc

    Seebeck Measurements on Bi1−x_{1-x}Sbx_{x} Nanowire Arrays

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    Optimization of copper nanocones for field emission cathodes

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