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铜取代的NaCoO的微观结构、热电性能和力学性能

Microstructural, Thermoelectric and Mechanical Properties of Cu Substituted NaCoO.

作者信息

Perać Sanja, Savić Slavica M, Branković Zorica, Bernik Slavko, Radojković Aleksandar, Kojić Sanja, Vasiljević Dragana, Branković Goran

机构信息

Institute for Multidisciplinary Research, University of Belgrade, Kneza Višeslava 1, 11030 Belgrade, Serbia.

Center for Sensing Technologies, Biosense Institute, Dr Zorana Đinđića 1, 21000 Novi Sad, Serbia.

出版信息

Materials (Basel). 2022 Jun 24;15(13):4470. doi: 10.3390/ma15134470.

Abstract

Polycrystalline samples of NaCoCuO (x = 0, 0.01, 0.03, 0.05) were obtained from powder precursors synthesized by a mechanochemically assisted solid-state reaction method (MASSR) and a citric acid complex method (CAC). Ceramic samples were prepared by pressing into disc-shaped pellets and subsequently sintering at 880 °C in an argon atmosphere. Effects of low concentrations of Cu doping and the above-mentioned synthesis procedures on the thermoelectric and mechanical properties were observed. The electrical resistivity (), the thermal conductivity () and the Seebeck coefficient () were measured simultaneously in the temperature gradient (Δ) between the hot and cold side of the sample, and the figure of merit () was subsequently calculated. The of the CAC samples was higher compared with the MASSR samples. The highest value of 0.061 at Δ = 473 K was obtained for the sample with 5 mol% of Cu prepared by the CAC method. The CAC samples showed better mechanical properties compared to the MASSR samples due to the higher hardness of the CAC samples which is a consequence of homogeneous microstructure and higher density obtained during sintering of these samples. The results confirmed that, besides the concentration of Cu, the synthesis procedure considerably affected the thermoelectric and mechanical properties of NaCoO (NCO) ceramics.

摘要

通过机械化学辅助固态反应法(MASSR)和柠檬酸络合法(CAC)合成的粉末前驱体制备了NaCoCuO(x = 0、0.01、0.03、0.05)的多晶样品。将陶瓷样品压制成圆盘状颗粒,随后在氩气气氛中于880°C烧结。观察了低浓度铜掺杂和上述合成工艺对热电性能和力学性能的影响。在样品的热端和冷端之间的温度梯度(Δ)中同时测量了电阻率()、热导率()和塞贝克系数(),随后计算了优值()。与MASSR样品相比,CAC样品的优值更高。通过CAC方法制备的含5 mol%铜的样品在Δ = 473 K时获得了最高的优值0.061。由于CAC样品具有更高的硬度,因此与MASSR样品相比,CAC样品表现出更好的力学性能,这是这些样品在烧结过程中获得均匀微观结构和更高密度的结果。结果证实,除了铜的浓度外,合成工艺对NaCoO(NCO)陶瓷的热电性能和力学性能有很大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a927/9267728/7c104ef84b54/materials-15-04470-g001.jpg

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