In this study, ZnO nanoplates (crystallite size: 100 nm, thickness: 15 nm) were synthesized via a hydrothermal route. Varistors were then fabricated using these ZnO nanoplates incorporated with five oxide dopants (Bi(2)O(3), Sb(2)O(3), MnO(2), Co(3)O(4), and Cr(2)O(3)) 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 (α = 48.5), low leakage current (J (L) = 9.7 μA cm(-2)), and high breakdown threshold (E (b) = 689 V mm(-1)). Impedance analysis showed a resistive-capacitive transition at higher frequencies, while grain boundary resistivity at low frequencies (10(6.5)-10(8) 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.
Tailoring morphological and electrical properties of nanoplate-ZnO varistors via sintering temperature.
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作者:Nguyen Trung Huy, Nguyen Van Trang, Vo Thi Kieu Anh, Cao Thi Hong, Nguyen Thi Xuyen, Nguyen Tuan Anh, Nguyen Tuan Anh, Tran Dai Lam, Tran Van Chinh, Lai Van Duy, La Duc Duong, Do Quang Tham
| 期刊: | RSC Advances | 影响因子: | 4.600 |
| 时间: | 2025 | 起止号: | 2025 Jun 12; 15(25):20006-20019 |
| doi: | 10.1039/d5ra01534k | ||
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