Zhou Bo, Chen Lili, Li Chongyang, Qi Ning, Chen Zhiquan, Su Xianli, Tang XinFeng
Hubei Nuclear Solid Physics Key Laboratory, Department of Physics, Wuhan University, Wuhan 430072, China.
Department of Radiotherapy, Henan Provincial People's Hospital, People's Hospital of Zhengzhou University, Zhengzhou, Henan 450003, China.
ACS Appl Mater Interfaces. 2020 Nov 18;12(46):51669-51678. doi: 10.1021/acsami.0c16506. Epub 2020 Nov 5.
In this paper, 2 atom % Al-doped ZnO (AZO) was prepared by the co-precipitation method together with sparking plasma sintering (SPS) treatment. The as-synthesized AZO powders show the morphology of hollow hexagonal towers, which result in a high porosity of 50.6% in the bulk sample consolidated by SPS sintering at 400 °C, and the porosity decreases gradually with increasing sintering temperature up to 1000 °C. Positron annihilation measurements reveal that even after sintering at 1000 °C, there are still a considerable number of small pores. A high electrical conductivity of 3 × 10 S m is achieved at room temperature for the AZO sample sintered at 1000 °C, while the absolute values of Seebeck coefficient keep at relatively high values between 59 and 144 μV K in the measurement temperature range of 27-500 °C, leading to a high power factor of 3.4 × 10 W m K. On the other hand, the pores in AZO act as strong phonon scattering centers, and an extremely low thermal conductivity of 1.5 W m K measured at room temperature is obtained for AZO sintered at 400 °C. Due to the residual pores in the 1000 °C-sintered sample, the thermal conductivity is still relatively low. As a result, a maximum of 0.275 measured at 500 °C is obtained in this sample, which is the highest reported for ZnO around this temperature.
在本文中,采用共沉淀法并结合放电等离子烧结(SPS)处理制备了2原子百分比铝掺杂的氧化锌(AZO)。合成的AZO粉末呈现出空心六角塔的形态,这使得在400℃下通过SPS烧结固结的块状样品中孔隙率高达50.6%,并且随着烧结温度升高至1000℃,孔隙率逐渐降低。正电子湮没测量表明,即使在1000℃烧结后,仍存在相当数量的小孔。在1000℃烧结的AZO样品在室温下实现了3×10 S/m的高电导率,而在27 - 500℃的测量温度范围内,塞贝克系数的绝对值保持在59至144 μV/K的相对较高值,导致功率因数高达3.4×10 W/(m²·K²)。另一方面,AZO中的孔隙充当了强声子散射中心,对于在400℃烧结的AZO,在室温下测得的热导率极低,为1.5 W/(m·K)。由于在1000℃烧结的样品中存在残余孔隙,其热导率仍然相对较低。结果,该样品在500℃时测得的最大值为0.275,这是在此温度附近报道的氧化锌的最高值。