l 学术论文 [1] Z.Y. Huang*, et. al., Enhanced thermoelectric properties of p-type Bi0.5Sb1.5Te3 bulk alloys by electroless plating with Cu and annealing. Scripta Materialia. 2016, 118, 19–23. [2] S. Cao, Z.Y.Huang*, et. al., Enhanced thermoelectric properties of Ag-modified Bi0.5Sb1.5Te3 composites by a facile electroless plating method. ACS Applied Materials & Interfaces. 2017, 9, 36478~36482. [3] Z.Y. Huang*,et. al, Achieving high thermoelectric performance of Ni/Cu modified Bi0.5Sb1.5Te3 composites by a facile electroless plating. Materials Today Energy. 2018, 9, 383-390. [4] Z.Y. Huang*,et. al, Enhancing thermoelectric performance of Cu-modified Bi0.5Sb1.5Te3 by electroless plating and annealing. Progress in Natural Science: Materials International. 2018, 28, 218–224. [5] Z.Y. Huang*,et. al, Effect of Cu electroless plating on thermoelectric properties of n-type Bi2Te2.4Se0.6 alloy. Journal of Materials Science-Materials in Electronics. 2019, 30, 15018–15023. [6] X.T Dai, Z.Y. Huang*,et. al., Effects of electroless plating with Cu content on thermoelectric and mechanical properties of p-type Bi0.5Sb1.5Te3 bulk alloys. Journal of Wuhan University of Technology-Materials Science Editions. 2018, 33, 797-801. [7] B. Zhu, Z.Y. Huang, et. al., Attaining ultrahigh thermoelectric performance of direction-solidified bulk n-type Bi2Te2.4Se0.6 via its liquid state treatment, Nano Energy. 2017, 42, 8–16. [8] Z.Y. Huang*,et. al., Electricity resistivity of Pb-Sn alloys. Phase Transition. 2013, 9, 803-808. [9] Z.Y. Huang*,et. al., Control of the phase composition and morphology of a Cu-Sb eutectic alloy via liquid-liquid structure transition. Crystal Research Technology. 2012, 9, 953–959. l 授权专利 [1] 黄中月* , 一种具有核-壳结构的Bi-Te基热电材料的制备方法,中国, 20161004957.8 |