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Tailoring morphological and electrical properties of nanoplate-ZnO varistors sintering temperature. | LitMetric

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Article Abstract

In this study, ZnO nanoplates (crystallite size: 100 nm, thickness: 15 nm) were synthesized a hydrothermal route. Varistors were then fabricated using these ZnO nanoplates incorporated with five oxide dopants (BiO, SbO, MnO, CoO, and CrO) and sintered at 1000, 1100, and 1200 °C. A control varistor sample using micro-sized ZnO was also prepared. The effects of sintering temperature on the structural, mechanical, and electrical properties of ZnO-based varistors were systematically studied. Increasing the sintering temperature from 1000 °C to 1200 °C enlarged the grain size (1.7-6.8 μm), enhanced hardness (200-280 HV), and resulted in 17-19% shrinkage. At 1100 °C, the varistor achieved a balance of high nonlinearity ( = 48.5), low leakage current ( = 9.7 μA cm), and high breakdown threshold ( = 689 V mm). Impedance analysis showed a resistive-capacitive transition at higher frequencies, while grain boundary resistivity at low frequencies (10-10 Ω m) aligned with DC resistivity at the low applied electric fields. These results highlight the advantages of ZnO nanoplates in enhancing the electrical performance of varistors, making them promising for high-voltage applications.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC12159798PMC
http://dx.doi.org/10.1039/d5ra01534kDOI Listing

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