Compromise and synergy in high‐efficiency thermoelectric materials T Zhu, Y Liu, C Fu, JP Heremans, JG Snyder, X Zhao Advanced materials 29 (14), 1605884, 2017 | 1524 | 2017 |
Realizing high figure of merit in heavy-band p-type half-Heusler thermoelectric materials C Fu, S Bai, Y Liu, Y Tang, L Chen, X Zhao, T Zhu Nature communications 6 (1), 8144, 2015 | 1200 | 2015 |
Point defect engineering of high‐performance bismuth‐telluride‐based thermoelectric materials L Hu, T Zhu, X Liu, X Zhao Advanced Functional Materials 24 (33), 5211-5218, 2014 | 813 | 2014 |
Bismuth telluride nanotubes and the effects on the thermoelectric properties of nanotube-containing nanocomposites XB Zhao, XH Ji, YH Zhang, TJ Zhu, JP Tu, XB Zhang Applied Physics Letters 86 (6), 2005 | 700 | 2005 |
Band engineering of high performance p-type FeNbSb based half-Heusler thermoelectric materials for figure of merit zT> 1 C Fu, T Zhu, Y Liu, H Xie, X Zhao Energy & Environmental Science 8 (1), 216-220, 2015 | 595 | 2015 |
High efficiency half‐Heusler thermoelectric materials for energy harvesting T Zhu, C Fu, H Xie, Y Liu, X Zhao Advanced Energy Materials 5 (19), 1500588, 2015 | 530 | 2015 |
Tuning multiscale microstructures to enhance thermoelectric performance of n‐type Bismuth‐Telluride‐based solid solutions L Hu, H Wu, T Zhu, C Fu, J He, P Ying, X Zhao Advanced Energy Materials 5 (17), 1500411, 2015 | 500 | 2015 |
High-performance half-Heusler thermoelectric materials Hf1− x ZrxNiSn1− ySby prepared by levitation melting and spark plasma sintering C Yu, TJ Zhu, RZ Shi, Y Zhang, XB Zhao, J He Acta Materialia 57 (9), 2757-2764, 2009 | 477 | 2009 |
Beneficial contribution of alloy disorder to electron and phonon transport in half‐heusler thermoelectric materials H Xie, H Wang, Y Pei, C Fu, X Liu, GJ Snyder, X Zhao, T Zhu Advanced Functional Materials 23 (41), 5123-5130, 2013 | 437 | 2013 |
New Insights into Intrinsic Point Defects in V2VI3 Thermoelectric Materials T Zhu, L Hu, X Zhao, J He Advanced Science 3 (7), 1600004, 2016 | 433 | 2016 |
High figures of merit and natural nanostructures in Mg2Si0. 4Sn0. 6 based thermoelectric materials Q Zhang, J He, TJ Zhu, SN Zhang, XB Zhao, TM Tritt Applied Physics Letters 93 (10), 2008 | 400 | 2008 |
Syntheses and thermoelectric properties of Bi2Te3∕ Sb2Te3 bulk nanocomposites with laminated nanostructure YQ Cao, XB Zhao, TJ Zhu, XB Zhang, JP Tu Applied Physics Letters 92 (14), 2008 | 394 | 2008 |
Single‐Crystalline LiMn2O4 Nanotubes Synthesized Via Template‐Engaged Reaction as Cathodes for High‐Power Lithium Ion Batteries YL Ding, J Xie, GS Cao, TJ Zhu, HM Yu, XB Zhao Advanced Functional Materials 21 (2), 348-355, 2011 | 387 | 2011 |
Shifting up the optimum figure of merit of p-type bismuth telluride-based thermoelectric materials for power generation by suppressing intrinsic conduction LP Hu, TJ Zhu, YG Wang, HH Xie, ZJ Xu, XB Zhao NPG Asia Materials 6 (2), e88-e88, 2014 | 356 | 2014 |
High band degeneracy contributes to high thermoelectric performance in p‐type half‐Heusler compounds C Fu, T Zhu, Y Pei, H Xie, H Wang, GJ Snyder, Y Liu, Y Liu, X Zhao Advanced Energy Materials 4 (18), 1400600, 2014 | 339 | 2014 |
The intrinsic disorder related alloy scattering in ZrNiSn half-Heusler thermoelectric materials H Xie, H Wang, C Fu, Y Liu, GJ Snyder, X Zhao, T Zhu Scientific reports 4 (1), 6888, 2014 | 293 | 2014 |
Nanostructures in high-performance (GeTe) x (AgSbTe2) 100− x thermoelectric materials SH Yang, TJ Zhu, T Sun, J He, SN Zhang, XB Zhao Nanotechnology 19 (24), 245707, 2008 | 279 | 2008 |
Unique role of refractory Ta alloying in enhancing the figure of merit of NbFeSb thermoelectric materials J Yu, C Fu, Y Liu, K Xia, U Aydemir, TC Chasapis, GJ Snyder, X Zhao, ... Advanced Energy Materials 8 (1), 1701313, 2018 | 270 | 2018 |
Low Electron Scattering Potentials in High Performance Mg2Si0.45Sn0.55 Based Thermoelectric Solid Solutions with Band Convergence X Liu, T Zhu, H Wang, L Hu, H Xie, G Jiang, GJ Snyder, X Zhao Advanced Energy Materials 3 (9), 1238-1244, 2013 | 266 | 2013 |
Carrier grain boundary scattering in thermoelectric materials C Hu, K Xia, C Fu, X Zhao, T Zhu Energy & Environmental Science 15 (4), 1406-1422, 2022 | 241 | 2022 |