Chenguang Fu
Max Planck Society
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Chenguang Fu.
Advanced Materials | 2018
Yintu Liu; Chenguang Fu; Kaiyang Xia; Junjie Yu; Xinbing Zhao; Hongge Pan; Claudia Felser; Tiejun Zhu
Forming solid solutions, as an effective strategy to improve thermoelectric performance, has a dilemma that alloy scattering will reduce both the thermal conductivity and carrier mobility. Here, an intuitive way is proposed to decouple the opposite effects, that is, using lanthanide contraction as a design factor to select alloying atoms with large mass fluctuation but small radius difference from the host atoms. Typical half-Heusler alloys, n-type (Zr,Hf)NiSn and p-type (Nb,Ta)FeSb solid solutions, are taken as paradigms to attest the validity of this design strategy, which exhibit greatly suppressed lattice thermal conductivity and maintained carrier mobility. Furthermore, by considering lanthanide contraction, n-type (Zr,Hf)CoSb-based alloys with high zT of ≈1.0 are developed. These results highlight the significance of lanthanide contraction as a design factor in enhancing the thermoelectric performance and reveal the practical potential of (Zr,Hf)CoSb-based half-Heusler compounds due to the matched n-type and p-type thermoelectric performance.
Rare Metals | 2018
Jia-Zhan Xin; Chenguang Fu; Wujun Shi; Guowei Li; Gudrun Auffermann; Yanpeng Qi; Tiejun Zhu; Xinbing Zhao; Claudia Felser
Bismuth tellurohalides with Rashba-type spin splitting exhibit unique Fermi surface topology and are developed as promising thermoelectric materials. However, BiTeBr, which belongs to this class of materials, is rarely investigated in terms of the thermoelectric transport properties. In the study, polycrystalline bulk BiTeBr with intensive texture was synthesized via spark plasma sintering (SPS). Additionally, its thermoelectric properties above room temperature were investigated along both the in-plane and out-plane directions, and they exhibit strong anisotropy. Low sound velocity along two directions is found and contributes to its low lattice thermal conductivity. Polycrystalline BiTeBr exhibits relatively good thermoelectric performance along the in-plane direction, with a maximum dimensionless figure of merit (ZT) of 0.35 at 560xa0K. Further enhancements of ZT are expected by utilizing systematic optimization strategies.
Chemistry of Materials | 2015
Pingjun Ying; Xiaohua Liu; Chenguang Fu; Xianqiang Yue; Hanhui Xie; Xinbing Zhao; Wenqing Zhang; T J Zhu
Chemistry of Materials | 2017
Tanya Berry; Chenguang Fu; Gudrun Auffermann; Gerhard H. Fecher; Walter Schnelle; Federico Serrano-Sanchez; Yuan Yue; Hong Liang; Claudia Felser
Advanced Energy Materials | 2018
Guowei Li; Yan Sun; Jiancun Rao; Jiquan Wu; Anil Kumar; Qiu Nan Xu; Chenguang Fu; Enke Liu; Graeme R. Blake; P. Werner; Baiqi Shao; Kai Liu; Stuart S. P. Parkin; Xianjie Liu; Mats Fahlman; Sz-Chian Liou; Gudrun Auffermann; Jian Zhang; Claudia Felser; Xinliang Feng
Journal of Physics D | 2017
Enkhtaivan Lkhagvasuren; Chenguang Fu; Gerhard H. Fecher; Gudrun Auffermann; Guido Kreiner; Walter Schnelle; Claudia Felser
arXiv: Strongly Correlated Electrons | 2018
Alexandre Jaoui; Benoît Fauqué; Carl Willem Rischau; Alaska Subedi; Chenguang Fu; Johannes Gooth; Nitesh Kumar; Vicky Süß; Dmitrii L. Maslov; Claudia Felser; Kamran Behnia
arXiv: Mesoscale and Nanoscale Physics | 2018
Clemens Schindler; Satya N. Guin; Walter Schnelle; Nitesh Kumar; Chenguang Fu; Horst Borrmann; Chandra Shekhar; Yang Zhang; Yan Sun; Claudia Felser; Tobias Meng; Adolfo G. Grushin; Johannes Gooth
arXiv: Materials Science | 2018
Satya N. Guin; Kaustuv Manna; Jonathan Noky; Sarah J. Watzman; Chenguang Fu; Nitesh Kumar; Walter Schnelle; Chandra Shekhar; Yan Sun; Johannes Gooth; Claudia Felser
arXiv: Materials Science | 2018
Chenguang Fu; Thomas Scaffidi; Jonah Waissman; Yan Sun; Rana Saha; Sarah J. Watzman; Abhay K. Srivastava; Guowei Li; Walter Schnelle; P. Werner; Machteld E. Kamminga; Subir Sachdev; Stuart S. P. Parkin; Sean A. Hartnoll; Claudia Felser; Johannes Gooth