publication_type publication_year number author title journal_title volume_number issue_number start_page end_page doi reported_at
Paper 2026 1 Zhao Hu, Airan Li, Naoki Sato, Xinzhi Wu, Longquan Wang, Xinyuan Wang, Takashi Aizawa, Takao Mori Phase-controlled molecular beam deposition unlocks flexible MgAgSb thermoelectrics with exceptional performance Nature Communications 17 1 2674-1 2674-9 https://doi.org/10.1038/s41467-026-69451-8 2026-10-04 08:21:44 +0900
Paper 2026 2 Xinyuan Wang, Cédric Bourgès, Longquan Wang, Gang Wu, Xinzhi Wu, Takao Mori Constructing in-situ heterostructure toward high-performance and stable Cu–S thermoelectrics Journal of Materials Science & Technology 267 46 54 https://doi.org/10.1016/j.jmst.2025.12.015 2026-10-04 08:21:44 +0900
Paper 2026 3 Longquan Wang, Jayachandran Babu, Takao Mori Best practices for thermoelectric materials and devices Nature Sustainability 9 7 947 949 https://doi.org/10.1038/s41893-026-01826-7 2026-10-04 08:21:44 +0900
Paper 2026 4 Longquan Wang, Airan Li, Bharti Agrawal, Xinzhi Wu, Gang Wu, Takao Mori Thermoelectric cooling: from materials to devices Science Bulletin 71 16 4074 4078 https://doi.org/10.1016/j.scib.2026.07.022 2026-10-04 08:21:44 +0900
Paper 2026 5 Gang Wu, Airan Li, Harish Subramania, Xinzhi Wu, Longquan Wang, Jiankang Li, Fei Frank Yun, Takao Mori "Strain-mediated grain-boundary reconstruction unlocks high near-room-temperature thermoelectric performance in Mg
3
Sb
2
-based alloys" Energy & Environmental Science 19 11 3500 3511 https://doi.org/10.1039/d6ee01515h 2026-10-04 08:21:44 +0900
Paper 2026 6 Airan Li, Xinzhi Wu, Longquan Wang, Gang Wu, Jiankang Li, Zhao Hu, Xinyuan Wang, Takao Mori Composable neural emulators accelerate thermoelectric generator design Nature 652 8110 643 649 https://doi.org/10.1038/s41586-026-10223-1 2026-10-04 08:21:44 +0900
Paper 2026 7 Jiankang Li, Airan Li, Longquan Wang, Xinzhi Wu, Raju Chetty, Takao Mori Thermoelectric Property Mapping for High‐Performance Integrated MgAgSb‐MgCuSb System Advanced Science 13 17 e20889-1 e20889-9 https://doi.org/10.1002/advs.202520889 2026-10-04 08:21:44 +0900
Paper 2026 8 Longquan Wang, Airan Li, Xinzhi Wu, Jiankang Li, Takao Mori Leveraging carrier mobility enables high-performance Mg3(Sb, Bi)2 thermoelectrics National Science Review 13 1 nwaf507-1 nwaf507-11 https://doi.org/10.1093/nsr/nwaf507 2026-10-04 08:21:44 +0900
Paper 2025 1 Longquan Wang, Airan Li, Jiankang Li, Naoyuki Kawamoto, Duy Hieu Nguyen, Takao Mori Homogenizing composition to achieve high-performance Mg3Bi2-type thermoelectrics Nano Energy 137 110797 110797-10 https://doi.org/10.1016/j.nanoen.2025.110797 2026-10-04 08:21:44 +0900
Paper 2025 2 Gang Wu, Airan Li, Longquan Wang, Xinzhi Wu, Xinyuan Wang, Takao Mori Modulating phonon dynamics: tailoring lattice vibrations to enhance thermoelectric efficiency in Mg3(Sb, Bi)2 alloy Nature Communications 16 1 10366-1 10366-11 https://doi.org/10.1038/s41467-025-65325-7 2026-10-04 08:21:44 +0900
Paper 2025 3 Airan Li, Longquan Wang, Jiankang Li, Xinzhi Wu, Takao Mori Self-optimized contact in air-robust thermoelectric junction towards long-lasting heat harvesting Nature Communications 16 1 1502-1 1502-10 https://doi.org/10.1038/s41467-025-56861-3 2026-10-04 08:21:44 +0900
Paper 2025 4 Xinzhi Wu, Longquan Wang, Airan Li, Gang Wu, Zhao Hu, Fei Frank Yun, Takao Mori "High Conversion Efficiency in Intrinsic High Power‐Density Mg
2
Sn‐GeTe Thermoelectric Generator" Advanced Science 12 40 e06997-1 e06997-9 https://doi.org/10.1002/advs.202506997 2026-10-04 08:21:44 +0900
Paper 2025 5 Longquan Wang, Airan Li, Xinzhi Wu, Jiankang Li, Takeo Ohsawa, Takao Mori Active Diffusion Controlled Dual Stability in Thermoelectrics for Sustainable Heat Harvesting Advanced Materials 37 38 2508270-1 2508270-10 https://doi.org/10.1002/adma.202508270 2026-10-04 08:21:44 +0900
Paper 2025 6 Airan Li, Longquan Wang, Xinzhi Wu, Jiankang Li, Xinyuan Wang, Gang Wu, Zhao Hu, Takao Mori Semiconductor-metal transition powers high-efficiency MgAgSb thermoelectrics Science Advances 11 27 eadx7115-1 eadx7115-9 https://doi.org/10.1126/sciadv.adx7115 2026-10-04 08:21:44 +0900
Paper 2024 1 Longquan Wang, Wenhao Zhang, Song Yi Back, Naoyuki Kawamoto, Duy Hieu Nguyen, Takao Mori High-performance Mg3Sb2-based thermoelectrics with reduced structural disorder and microstructure evolution Nature Communications 15 1 6800-1 6800-11 https://doi.org/10.1038/s41467-024-51120-3 2026-10-04 08:21:44 +0900
Paper 2024 2 Airan Li, Longquan Wang, Jiankang Li, Takao Mori Global softening to manipulate sound velocity for reliable high-performance MgAgSb thermoelectrics Energy & Environmental Science 17 22 8810 8819 https://doi.org/10.1039/d4ee03521f 2026-10-04 08:21:44 +0900
Paper 2024 3 Hyunyong Cho, Song Yi Back, Naoki Sato, Zihang Liu, Weihong Gao, Longquan Wang, Hieu Duy Nguyen, Naoyuki Kawamoto, Takao Mori Outstanding Room‐Temperature Thermoelectric Performance of n‐type Mg3Bi2‐Based Compounds Through Synergistically Combined Band Engineering Approaches Advanced Functional Materials 34 44 2407017-1 2407017-11 https://doi.org/10.1002/adfm.202407017 2026-10-04 08:21:44 +0900
Paper 2023 1 Longquan Wang, Naoki Sato, Ying Peng, Raju Chetty, Naoyuki Kawamoto, Duy Hieu Nguyen, Takao Mori Realizing High Thermoelectric Performance in N‐Type Mg3(Sb, Bi)2‐Based Materials via Synergetic Mo Addition and Sb–Bi Ratio Refining Advanced Energy Materials 13 35 https://doi.org/10.1002/aenm.202301667 2026-10-04 08:21:44 +0900
Paper 2022 1 Yanan Wang, Raju Chetty, Zihang Liu, Longquan Wang, Takeo Ohsawa, Weihong Gao, Takao Mori A facile route to fabricating a crack-free Mg0.99Cu0.01Ag0.97Sb0.99/graphene/PEDOT:PSS thermoelectric film on a flexible substrate Journal of Materials Chemistry C 10 35 12610 12620 https://doi.org/10.1039/d2tc02176e 2026-10-04 08:21:44 +0900
Paper 2022 2 Longquan Wang, Susu Fang, Junqin Li, Lipeng Hu, Fusheng Liu, Weigao Xu, Takao Mori, Chaohua Zhang Anomalous enhancement of thermoelectric performance in GeTe with specific interaxial angle and atomic displacement synergy Cell Reports Physical Science 3 9 101009 https://doi.org/10.1016/j.xcrp.2022.101009 2026-10-04 08:21:44 +0900