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Particle size and annealing ambient effect on properties of ZnO-Bi_2O_3-Mn_2O_3 varistor derived from ZnO micro- and nanoparticle powders

机译:粒径和退火环境对ZnO微粉和纳米粉的ZnO-Bi_2O_3-Mn_2O_3压敏电阻性能的影响

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摘要

ZnO-Bi_2O_3-Mn_2O_3 varistors based on ZnO micro- and nanoparticle powders were prepared via conventional ceramic processing and the effects of ZnO particle size and different annealing conditions on their properties were investigated. The strong solid-state reaction during sintering may be attributed to the high surface area of the 20 nm ZnO nanoparticles. The annealing process improves grain crystallinity, as shown in the decrease in intrinsic compres-sive stress based on the X-ray diffraction lattice constant and full-width at half-maximum (FWHM) data. The reduced particle size significantly influences the electrical properties, showing a sharp drop in the breakdown voltage which has been found to strongly depend on grain size and potential barrier formation. The observed shift in the energy band gap from a higher value to a lower one derives from the conversion from compressive to tensile stresses with annealing. The Raman spectra indicate the sizes of particles and dopants to have significant effects on the E_2~((high)) phonon mode and ZnO crystal structures.
机译:通过常规的陶瓷工艺制备了基于ZnO微粉和纳米粉的ZnO-Bi_2O_3-Mn_2O_3压敏电阻,研究了ZnO粒径和退火条件对其性能的影响。烧结过程中的强固态反应可归因于20 nm ZnO纳米颗粒的高表面积。退火过程改善了晶粒的结晶度,这是基于X射线衍射晶格常数和半高全宽(FWHM)数据的固有压应力的降低所显示的。减小的粒度显着影响电性能,显示出击穿电压的急剧下降,已发现其强烈依赖于晶粒尺寸和势垒形成。观察到的能带隙从较高的值到较低的值的偏移源自退火导致的从压缩应力到拉伸应力的转换。拉曼光谱表明颗粒和掺杂剂的尺寸对E_2〜((高))声子模和ZnO晶体结构具有重要影响。

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