Q
Qian Zhang
Researcher at Chinese Academy of Sciences
Publications - 816
Citations - 20819
Qian Zhang is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Thermoelectric effect & Thermoelectric materials. The author has an hindex of 56, co-authored 638 publications receiving 14885 citations. Previous affiliations of Qian Zhang include Radboud University Nijmegen Medical Centre & Northeast Normal University.
Papers
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Journal ArticleDOI
Observation of superdiffusive phonon transport in aligned atomic chains.
Lin Yang,Yi Tao,Yi Tao,Yanglin Zhu,Manira Akter,Ke Wang,Zhiliang Pan,Yang Zhao,Qian Zhang,Ya-Qiong Xu,Renkun Chen,Terry T. Xu,Yunfei Chen,Zhiqiang Mao,Deyu Li +14 more
TL;DR: In this article, a 1/3 power law between thermal conductivity and length of a NbSe3 nanowire is observed, pointing towards a superdiffusive heat transport regime.
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Enhanced thermoelectric performance in polycrystalline N-type Pr-doped SnSe by hot forging
Shan Li,Shan Li,Fanghao Zhang,Chen Chen,Xiaofang Li,Feng Cao,Jiehe Sui,Xingjun Liu,Zhifeng Ren,Qian Zhang +9 more
TL;DR: In this article, n-type Sn1-xPrxSe polycrystals are prepared by ball milling and hot pressing, and a maximum ZT value of 0.7 at 773 K is achieved in Sn0.97Pr0.03Se due to the enhanced electron concentration and electrical conductivity resulting from Pr doping at the Sn site.
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Oriented Formation of a Prussian Blue Nanoflower as a High Performance Cathode for Sodium Ion Batteries
Daxian Zuo,Cuiping Wang,Jiajia Han,Junwei Wu,Hua-Jun Qiu,Qian Zhang,Yong Lu,Yongjin Lin,Xingjun Liu +8 more
TL;DR: Recently, the rational design and fabrication of Prussian blue (PB) cathodes with a unique morphology has been regarded as a promising way to improve the electrochemical properties for sodium ion b... as discussed by the authors.
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Thermoelectric properties of n-type Mg2Si0.6-ySbySn0.4compounds
TL;DR: In this article, the thermoelectric properties of n-type Mg2Si0.6−ySby Sn0.4 solid solutions with a small Sb-doping ratio on the Si-site (y = 0.0−0.015) were prepared by an induction melting/hot-pressing method.
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Enhanced Thermoelectric Performance in High Entropy Alloys Sn0.25Pb0.25Mn0.25Ge0.25Te.
Xinyu Wang,Honghao Yao,Zongwei Zhang,Xiaofang Li,Chen Chen,Li Yin,Kangning Hu,Yirui Yan,Zhou Li,Bo Yu,Feng Cao,Xingjun Liu,Xi Lin,Qian Zhang +13 more
TL;DR: In this article, PbTe, GeTe, and MnTe are coalloyed with SnTe to form a single-phase solid solution, and the configuration entropy increases and phonon scattering is strongly enhanced.