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In situ high temperature TEM analysis of sintering in nanostructured tungsten and tungsten-molybdenum alloy photonic crystals

机译:纳米结构钨和钨钼合金光子晶体烧结的原位高温TEM分析

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摘要

Tungsten and tungsten-molybdenum alloys (95 : 5 w/w) with a three-dimensionally ordered rhacroporous (3DOM) structure were prepared by infiltration of poly(methyl methacrylate) colloidal crystals with acetylated peroxotungstic acid and acetylated peroxomolybdic acid as solution precursors. In contrast to previous preparations, by using these precursors, it was possible to maintain the original metal ratio in the product obtained after hydrogen reduction, thereby permitting better control over the product composition. To evaluate the suitability of these metallic photonic crystals for thermal emission processes, the thermal stability of 3DOM W and 3DOM W/Mo was investigated by SEM analysis for samples treated ex situ in nitrogen at 800-1000℃ and by TEM analysis with in situ heating to follow real-time changes in high vacuum between room temperature and 1000℃. Grain coarsening and distortion of the structure that starts in 3DOM W at 800℃ in a nitrogen atmosphere could be delayed to higher temperatures by heating the sample in high vacuum and by alloying with 5 wt% Mo. In the pure metal, structural changes were first seen for feature sizes below ca. 30 nn, whereas similar changes occurred in the alloy only for much smaller features below ca. 3 run. The TEM analyses also provided indirect evidence for reduced stresses in the photonic crystal during thermal treatment.
机译:通过以乙酰化过氧钨酸和乙酰化过氧钼酸为溶液前体浸润聚甲基丙烯酸甲酯胶体晶体,制备了具有三维有序晶状(3DOM)结构的钨和钨钼合金(95:5 w / w)。与先前的制备相反,通过使用这些前体,可以在氢还原后获得的产物中保持原始金属比,从而可以更好地控制产物组成。为了评估这些金属光子晶体在热发射过程中的适用性,通过SEM分析在800-1000℃下在氮气中异地处理的样品,并通过TEM分析,对3DOM W和3DOM W / Mo的热稳定性进行了研究。跟踪室温到1000℃之间高真空的实时变化。通过在高真空下加热样品并与5 wt%的Mo合金化,可以在氮气氛中以800℃在3DOM W中开始的组织粗化和变形延迟到更高的温度。在纯金属中,首先发生结构变化可以看到低于ca的特征尺寸。 30 nn,而合金中的类似变化仅发生在大约小于0.001的较小特征上。 3运行。 TEM分析还提供了间接证据,表明热处理期间光子晶体的应力降低了。

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