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Dielectric Properties of Ceramic Composite with Nanosized Ni on Tubular Halloysite Template Under High Frequency

机译:管状镍铁矿模板上纳米Ni陶瓷复合材料的高频介电性能

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摘要

Halloysite is an inexpensive nanoclay mineral with a tubular structure. A ceramic composite with nano-sized Ni on the halloysite template is fabricated by electroless deposition, and its dielectric properties at an applied frequency of 2-18 GHz, are primarily investigated at different post-annealing temperatures and contents. Results indicate that the permittivity and dielectric loss values increase with the increase of composite contents, while decrease with the post-annealing temperature. The post-annealing treatment at different temperatures causes a transformation of nano-sized metallic Ni from an amorphous to crystal structure, which significantly affects the dielectric properties of the composite, especially in its percolation state. The resonant peaks of the composite shift toward high frequency at elevated annealing temperature. Due to its desirable advantages under high frequency, such as low weight, tunable permittivity and dielectric loss, the composite can be used for new dielectric ceramic materials.
机译:埃洛石是一种廉价的具有管状结构的纳米粘土矿物。通过化学沉积法制备了在埃洛石模板上具有纳米尺寸Ni的陶瓷复合材料,并在不同的退火后温度和含量下研究了其在2-18 GHz施加频率下的介电性能。结果表明,介电常数和介电损耗值随复合材料含量的增加而增加,而随后退火温度的降低而减小。在不同温度下的后退火处理导致纳米级金属Ni从无定形转变为晶体结构,这显着影响了复合材料的介电性能,尤其是在其渗透状态下。在升高的退火温度下,复合材料的共振峰向高频移动。由于其在高频下的理想优势,例如重量轻,可调整的介电常数和介电损耗,该复合材料可用于新型介电陶瓷材料。

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