Paper Publications
- [1] 张亚翠. Thermoelectric properties of Li-doped Sr_(0.7)Ba_(0.3)Nb_2O_(6-δ) ceramics. Chinese Physics B, 26, 427-431, 2017.
- [2] 祝元虎. Enhanced Thermoelectric Response of Ca0.96Dy02Re02MnO3 Ceramics (Re = La, Nd, Sm) at High Temperature. Journal of Electronic Materials , 44, 414-419, 2015.
- [3] 刘剑. Nb掺杂对还原性烧结的TiO2-δ陶瓷的晶体结构及热电性能的影响. ACTA PHYSICA SINICA, 60, 614-619, 2011.
- [4] 刘剑. Synthesis and thermoelectric properties of Sr0.95La05TiO3-δ-TiO2 solid solutions. Solid State Sciences, 12, 134-137, 2010.
- [5] 李宜. Thermoelectric properties of Sr0.61Ba0.39Nb2O6-δ ceramics in different oxygen-reduction conditions. Chinese Physics B, 24, 353-358, 2015.
- [6] 刘剑. Enhancement of thermoelectric efficiency in oxygen-deficient Sr 1-x Lax TiO3-δ ceramics. APPLIED PHYSICS LETTERS, 95, 162110-1-162110-3, 2009.
- [7] 祝元虎. Influence of Dy/Bi dual doping on thermoelectric performance of CaMnO 3 ceramics. Materials Chemistry and Physics, 144, 385-389, 2014.
- [8] ZhouYC. Electrical properties of Dy3+/Na+ Co-doped oxide thermoelectric [Ca1-x(Na1/2Dy1/2)x]MnO3 ceramics. JOURNAL OF ALLOYS AND COMPOUNDS , 680, 129-132, 2016.
- [9] Zhang, X.M.. Optical absorption coefficient red shift effect of iodine vacancy in MAPbI3. Computational Materials Science, 154, 138-142, 2018.
- [10] Du Yan-Ling. Stability and electronic structure studies of LaAIO3/SrTiO3 (110) heterostructures. 中国物理B英文版, 468-473, 2014.
- [11] 祝元虎. Influence of rare-earth elements doping on thermoelectric properties of Ca0.98Dy0.02MnO3 at high temperature. Journal of Solid State Chemistry, 225, 105-109, 2015.
- [12] 邵明昱. Electrolyte design for highly reversible zinc anodes via prismatic plane growth and nucleation kinetics regulation. Chemical Engineering Journal, 2025.
- [13] 王琦琦. High thermoelectric performance and anisotropy studies of n-type Mg<sub>3</sub>Bi<sub>2</sub>-based single crystal. Acta Materialia, 255, 2023.
- [14] Chen, Bo. Two-dimensional valley-layer coupling heterostructures. APPLIED PHYSICS LETTERS, 126, 2025.
- [15] Li, Yi. Peierls plasticity of thermoelectric lead telluride assessed by local misfit energy. APPLIED PHYSICS LETTERS, 123, 2023.
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