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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Silicate-CoNi-carbon triple shell sandwich structured composite hollow microspheres with low density boosted microwave absorption and high mechanical strength
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Silicate-CoNi-carbon triple shell sandwich structured composite hollow microspheres with low density boosted microwave absorption and high mechanical strength

机译:硅酸盐 - 锥形三联壳夹层结构化复合空心微球,低密度升高微波吸收和高机械强度

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摘要

Low density (ca. 0.69 g cm(-3)) sandwich structured silicate-CoNi-carbon triple shell composite hollow microspheres (CHMs) were prepared by a stepwise three-stage shell-assembly route. Hollow microspheres with robust silicate shells were fabricated firstly through spray drying-high temperature melting, which were subsequently employed as a support for the in situ formation and assembly of CoNi shells. Then the CoNi shells underwent a double-interface co-constricted crystallization during calcination-induced carbonization to form the final product. The density of the hollow microspheres increases gradually with the stepwise assembly of the CoNi and the carbon shells, while the broken ratio of the hollow microspheres at the same isostatic pressure varies in an opposite trend. Moreover, the enriched interfaces with distinguished conductivity, multiple electromagnetic dissipation mechanisms and suitable impedance matching favour the triple shell CHMs with excellent electromagnetic absorption properties. The minimum reflection loss value can reach -55.4 dB, and a broad effective frequency range of 6.8 GHz can be achieved. Moreover, when used as lightweight functional fillers, the as-obtained polymer-triple shell CHMs composite exhibits a low density of 0.92 g cm(-3) and high compression strength of 132 +/- 2.1 MPa.
机译:采用分步三段壳组装工艺制备了低密度(约0.69gcm(-3))夹心结构的硅酸盐锥碳三壳复合空心微球(CHMs)。首先通过喷雾干燥高温熔融法制备了具有坚固硅酸盐壳的空心微球,然后将其用作原位形成和组装锥形壳的支撑。然后,在煅烧诱导碳化过程中,锥壳经历了双界面共收缩结晶,形成最终产物。随着锥壳和碳壳的逐步组装,空心微球的密度逐渐增加,而在相同的等静压下,空心微球的破碎率变化趋势相反。此外,丰富的界面具有优异的导电性、多种电磁耗散机制和合适的阻抗匹配,有利于三层壳CHM具有优异的电磁吸收性能。最小反射损耗值可达-55.4dB,有效频率范围可达6.8GHz。此外,当用作轻质功能填料时,所获得的聚合物三壳CHMs复合材料具有0.92 g cm(-3)的低密度和132+/-2.1 MPa的高压缩强度。

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