1. 国家重点研发计划-重点专项课题(2018YFA0702104),高效、高密度阵列热电器件的集成与有序界面优化,2019.09-2024.08
2. 国家重点研发计划-重点专项子课题(2022YFB3803901),基于介观有序重构原理的高性能热电材料,2022.11-2025.10
3. B. Z. Tian, H. S. Ma, X. An, Y. Q. Mao, Q. Deng, Q. Sun, andR. Ang*; Multifunctional durable solid-state thermoelectric sensor enabled by interstitial Co doping in Mg3(Sb, Bi)2;Device2, 100524 (2024).
4. J. L. Zhu, X. B. Tan, M. Hong, Y. X. Wei, H. S. Ma, F. Feng, Y. G. Luo, H. Wu, Q. Sun, andR. Ang*; Multiphase Coherent Nanointerface Network Enhances Thermoelectric Performance for Efficient Energy Conversion and Contactless Thermosensation Applications in GeTe;Adv. Energy Mater.2402552 (2024). DOI: 10.1002/aenm.202402552
5. X. W. Zhao, B. Q. Fu, andR. Ang*; Manipulating Pb Vacancies Achieved Ultra-High Thermoelectrics in Quaternary Pb0.95Na0.04Te1-xSex via Fine-Tuning Se Solubility;Adv. Funct. Mater.34, 2401582 (2024).
6. R. H. Li, W. X. Ou, J. L. Zhu, Q. Deng, X. B. Tan, Q. Zhao, T. B. Lu, S. J. Y. Gao, H. S. Ma, H. Wu, Q. Sun, andR. Ang*; Exceptional thermoelectric and mechanical performance in (Bi, Sb)2Te3matrix facilitated by AgInSe2 alloying;Chem. Eng. J.497, 154624 (2024).
7. Q. Deng, F. J. Zhang, P. F. Nan, Z. Y. Zhang, L. Gan, Z. Q. Chen, B. H. Ge, H. L. Dong, H. K. Mao, andR. Ang*; Unique Semi-Coherent Nanostructure Advancing Thermoelectrics of N-Type PbSe;Adv. Funct. Mater.34, 2310073 (2024).
8. J. L. Zhu, F. J. Zhang, Y. L. Tai, X. B. Tan, Q. Deng, P. F. Nan, R. H. Cheng, C. L. Xia, Y. Chen, B. H. Ge, andR. Ang*; Enhanced thermoelectric performance and mechanical strength in GeTe enable power generation and cooling;InfoMat6, e12514 (2024).
9. J. L. Zhu, X. B. Tan, D. Pan, Y. N. Luo, R. H. Li, X. R. Rao, R. H. Cheng, C. L. Xia, Y. Chen, Q. Sun, andR. Ang*; Functionally separated electronic band engineering via multi-element doping plus high-density defects advances board-temperature-range thermoelectric performance in GeTe;Chem. Eng. J.480, 148135 (2024).
10. F. L. Lv, Y. Zhong, X. W. Zhao, X. An, Q. Deng, L. Gan, L. W. Lin, andR. Ang*; Lead vacancy promotes sodium solubility to achieve ultra-high zT in only ternary Pb1-xNaxTe;Small19, 2301352 (2023).
11. H. R. Feng, Q. Deng, Y. Zhong, X. R. Rao, Y. D. Wang, J. L. Zhu, F. J. Zhang, andR. Ang*; Annealing engineering induced high thermoelectric performance in Yb-filled CoSb3 skutterudites;J. Mater. Sci. Tech.150, 168-174 (2023).
12. H. T. Liu, Q. Sun, Y. Zhong, Q. Deng, L. Gan, F. L. Lv, X. L. Shi, Z. G. Chen, andR. Ang*; High-performance in n-type PbTe-based thermoelectric materials achieved by synergistically dynamic doping and energy filtering;Nano Energy91, 106706 (2022).
13. Q. Shi, X. Y. Chen, Y. Y. Chen, X. Zhao, W. K. He, C. J. Zhou, andR. Ang*; Broadening temperature plateau of high zTs in PbTe doped Bi0.3Sb1.7Te3 through defect carrier regulation and multi-scale phonon scattering;Mater. Today Phys.22, 100610 (2022).
14. H. T. Liu, Q. Sun, Y. Zhong, C. L. Xia, Y. Chen, Z. G. Chen, andR. Ang*; Achieving high-performance n-type PbTe via synergistically optimizing effective mass and carrier concentration and suppressing lattice thermal conductivity;Chem. Eng. J.428, 132601 (2022).
15. Z. L. Wu, X. M. Guo, G. Xie, T. T. Yan, D. J. Wu, F. J. Zhang, andR. Ang*; Heat and electric flux coupling of closed-loop thermoelectric generator;Energy Convers. Manage.244, 114529 (2021).
16. Z. Y. Chen, J. Li, J. Tang, F. J. Zhang, Y. Zhong, H. T. Liu, andR. Ang*; Boosting thermoelectrics by alloying Cu2Se in SnTe-CdTe compounds;J. Mater. Sci. Tech.89, 45-51 (2021).
17. Z. Y. Chen, X. M. Guo, F. J. Zhang, Q. Shi, M. J. Tang, andR. Ang*; Routes for advancing SnTe thermoelectrics;J. Mater. Chem. A8, 16790-16813 (2020).
18.R. Ang, Z. C. Wang, C. L. Chen, J. Tang, N. Liu, Y. Liu, W. J. Lu, Y. P. Sun, T. Mori, and Y. Ikuhara; Atomistic origin of ordered superstructure induced superconductivity in layered chalcogenides;Nat. Commun.6, 6091 (2015).
19.R. Ang*, A. U. Khan, N. Tsujii, K. Takai, R. Nakamura, and T. Mori; Thermoelectricity generation and electron-magnon scattering in a natural chalcopyrite mineral from a deep-sea hydrothermal vent;Angew. Chem. Int. Ed.54, 12909-12913 (2015).
20.R. Ang*, Y. Tanaka, E. Ieki, K. Nakayama, T. Sato, L. J. Li, W. J. Lu, Y. P. Sun, and T. Takahashi; Real-space coexistence of the melted Mott state and superconductivity in Fe-substituted 1T-TaS2;Phys. Rev. Lett.109, 176403 (2012).