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- W3203348549 abstract "• ZrB 2 -Ag composite films are prepared by DC magnetron co-sputtering method. • Pure ZrB 2 film exhibits a negative TCR character. • TCR values of ZrB 2 -Ag film can be tailored near-zero by modifying Ag content. • Introducing Ag particles into ZrB 2 film can reduce its resistivity greatly. Nanocrystalline ZrB 2 -Ag composite films, which utilize Ag nanoparticles as embedded ions, were directly fabricated via the direct current magnetron co-sputtering technique. Keithley Hall Measuring Instrument allowed insight into the physical features in the temperature of 77 K to 373 K. Ag-containing composite film led to resistivity for composite films descended exponentially rather than linearly, however also resulting in the temperature coefficient of resistivity (TCR) values varied from negative to positive. Both comparable lower resistivity (114.9 μΩ·cm) and even near-zero TCR 77-373 K at 3 ppm·K −1 indicated that low resistivity and near-zero temperature drift ZrB 2 -Ag composite film can be obtained by tailoring the Ag content. Moreover, this provides a promising approach to develop sophisticated thin-film resistors (TFR) materials below and above ambient temperature with a broader temperature range." @default.
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- W3203348549 date "2022-01-01" @default.
- W3203348549 modified "2023-09-24" @default.
- W3203348549 title "Low resistivity and near-zero temperature drift ZrB2-Ag composite films prepared by DC magnetron co-sputtering" @default.
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- W3203348549 doi "https://doi.org/10.1016/j.matlet.2021.130992" @default.
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