1.Q.Deng,R. Ang*et al.,Lattice defect engineering advances n-type PbSe thermoelectrics;Nat. Commun.16,656(2025).
2. Z. L. Zhao,R. Ang*et al.,Cooperative Nanostructuring and Resonant Density-of-States Engineering Enable High-Performance nType PbSe Thermoelectrics;J. Am. Chem. Soc.148, 17811-17823(2026).
3. J. L. Zhu,R. Ang*et al.,Synergistic Optimization of Electronic and Thermal Properties in Single-Stage GeTe Thermoelectric Devices;J. Am. Chem. Soc.147, 37555-37564(2025).
4. J. L. Zhu,R. Ang*et al.,Multi-Scale Lattice Strain Engineering Enables Reduced Deformation Potential and High Thermoelectric Performance in GeTe Alloys;Adv. Energy Mater.16, e71495(2026).
5. X. R. Rao,R. Ang*et al.,Dual Band Optimization and Defect Engineering Enable Ultrahigh Thermoelectric Performance in Filled Skutterudites;Adv. Energy Mater.16, e06357(2026).
6. F. Xu,B. Liu,R. Ang*,Advancing Thermoelectrics in Lead-Free Rhombohedral GeTe via Interfacial Engineering With MXene;Adv. Energy Mater.15, 2405554(2025).
7. J. L. Zhu,R. Ang*et al.,Multiphase Coherent Nanointerface Network Enhances Thermoelectric Performance for Efficient Energy Conversion and Contactless Thermosensation Applications in GeTe;Adv. Energy Mater.14, 2402552(2024).
8.Q.Deng,R. Ang*et al.,Ordered grain boundary reconstruction induces high-efficiency thermoelectric power generation in SnTe;Energy Environ. Sci.17, 9467-9478(2024).
9. J. L. Zhu,R. Ang*et al.,Valence Band Modification and Enhanced Phonon-Phonon Interactions for High Thermoelectric Performance in GeTe;Adv.Funct.Mater.35, 2417260(2025).
10. X. W. Zhao, B. Q. Fu,R. Ang*; Manipulating Pb Vacancies Achieved Ultra-High Thermoelectrics in Quaternary Pb0.95Na0.04Te1-xSexvia Fine-Tuning Se Solubility;Adv. Funct. Mater.34, 2401582(2024).
11.Q.Deng,R. Ang*et al.,Unique Semi-Coherent Nanostructure Advancing Thermoelectrics of N-Type PbSe;Adv. Funct. Mater.34, 2310073(2024).
12. X. R. Rao,R. Ang*et al.,DualDecoupling Charge-Phonon Transport via Hierarchical Interface Reconstruction in Skutterudite Thermoelectrics;ACS Energy Lett.11, 6384-6395(2026).
13. X. B. Tan,R. Ang*et al.,Stabilized Cubic GeTe With Matched Grain-Boundary Networks and Band Convergence for High-Performance Dual-Mode Thermoelectric Devices;Adv. Sci.13, e76668(2026).
14. R. H. Li,R. Ang*et al.,Coupled Vacancy and Phonon-Scattering Engineering Drive Defect Evolution Toward Multifunctional High-Performance Bi2Te3Thermoelectrics;Adv. Sci.13, e75529(2026).
15. J. L. Zhu,R. Ang*et al.,Balancing Effective Mass and Carrier Mobility via Ga-Induced Multi-Band Valley Engineering in GeTe Thermoelectrics;Adv. Sci.13, e74427(2026).
16. R. H. Li,R. Ang*et al.,Cu3SbSe3-Alloying-Induced High Thermoelectric Performance and Mechanical Robustness in Bi2Te3-Based Thermoelectric Materials;Adv. Sci.12, e12417(2025).
17. X. B. Tan,R. Ang*et al.,Enhanced Band-Crystal Engineering Drives Superior Power Generation in GeTe;Adv. Sci.12, e06612(2025).
18. F. Xu,B. Liu,R. Ang*,Crystal symmetry-driven structural design for enhanced thermoelectric performance in lead-free cubic GeTe;Acta Mater.296, 121266(2025).
19. B. Z. Tian,R. Ang*et al.,Expanding thermoelectric horizons: Establishing correlations between thermoelectric parameters and multifunctional sensing signals;iScience28, 113549 (2025).(Cell Press)
20. B. Z. Tian,R. Ang*et al.,Multifunctional durable solid-state thermoelectricsensor enabled by interstitial Co doping inMg3(Sb, Bi)2;Device2, 100524 (2024).(Cell Press)
21.J. L.Zhu,R. Ang*et al.,Enhanced thermoelectric performance and mechanical strength in GeTe enable power generation and cooling;InfoMat6, e12514(2024).
22.Q.Deng,R. Ang*et al.,Ultra-high thermoelectric performance in ternary n-type PbTe collaboratively enabled by self-optimized carrier concentration and ultra-low lattice thermal conductivity;J.Mater.Sci.Tech.236,86-94(2025).
23. H. R. Feng,R. Ang*et al.,Annealing engineering induced high thermoelectric performance in Yb-filled CoSb3skutterudites;J.Mater.Sci.Tech.150,168-174(2023).
24. Z. Y. Chen,R. Ang*et al.,Boosting thermoelectrics by alloying Cu2Se in SnTe-CdTe compounds;J.Mater.Sci.Tech.89, 45-51 (2021).
25.F. J. Zhang,R. Ang*et al.,Lattice modulation and electronic band optimization in Q-doped SnTe-GeTe alloys (Q = Bi, Sb, and Ag);Sci. China Mater.66,3659-3669(2023).
26. B. Z. Tian,R. Ang*et al.,Thermoelectric composite hydrogels with ionic-electronic transport for bioactive energy harvesting and sensing;Nano Energy153, 111940(2026).
27. H. T. Liu,R. Ang*et al.,High-performance inn-type PbTe-based thermoelectric materials achieved by synergistically dynamic doping and energy filtering;Nano Energy91, 106706 (2022).
28.R. Anget al.,Atomistic origin of ordered superstructure induced superconductivity in layered chalcogenides;Nat.Commun.6, 6091 (2015).
29.R. Ang*et al.,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).
30.R. Ang*et al.,Real-space coexistence of the melted Mott state and superconductivity in Fe-substituted 1T-TaS2;Phys.Rev.Lett.109, 176403 (2012).