Xuezhi Ke
Overview
Explore the profile of Xuezhi Ke including associated specialties, affiliations and a list of published articles.
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Articles
13
Citations
47
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Recent Articles
1.
Wang X, Sheng Y, Ning J, Xi J, Xi L, Qiu D, et al.
J Phys Chem Lett
. 2023 Feb;
14(7):1808-1822.
PMID: 36763950
Thermoelectric (TE) materials can directly convert heat to electricity and vice versa and have broad application potential for solid-state power generation and refrigeration. Over the past few decades, efforts have...
2.
Sun J, Liao Z, Zhang Y, Guo Y, Ke X
J Phys Condens Matter
. 2021 Oct;
34(4).
PMID: 34666326
First-principles calculations and particle swarm optimization algorithm are combined to predict the crystal structures in the pressure range from 0 to 100 GPa. Four phases of ThBC are determined, including...
3.
Liu C, Yang J, Xi J, Ke X
Nanoscale
. 2019 May;
11(22):10828-10837.
PMID: 31135021
Within the past few years, intriguing graphene Dirac cones have attracted intense interest in novel two-dimensional (2D) Dirac materials as ultrahigh-mobility functional materials. In this work, the phonon-limited charge transport...
4.
Guo Y, Yu C, Lin J, Wang C, Ren C, Sun B, et al.
Sci Rep
. 2017 Apr;
7:45872.
PMID: 28383571
Thorium-carbon systems have been thought as promising nuclear fuel for Generation IV reactors which require high-burnup and safe nuclear fuel. Existing knowledge on thorium carbides under extreme condition remains insufficient...
5.
Yu C, Lin J, Huai P, Guo Y, Ke X, Yu X, et al.
Sci Rep
. 2017 Mar;
7(1):96.
PMID: 28273889
Thorium monocarbide (ThC) as a potential fuel for next generation nuclear reactor has been subjected to its structural stability investigation under high pressure, and so far no one reported the...
6.
Qiu W, Lu P, Yuan X, Xu F, Wu L, Ke X, et al.
J Chem Phys
. 2016 May;
144(19):194502.
PMID: 27208953
Quite a few interesting but controversial phenomena, such as simple chemical composition but complex structures, well-defined high-temperature cubic structure but intriguing phase transition, coexist in Cu2Se, originating from the relatively...
7.
Qiu W, Wu L, Ke X, Yang J, Zhang W
Sci Rep
. 2015 Sep;
5:13643.
PMID: 26328765
Searching and designing materials with extremely low lattice thermal conductivity (LTC) has attracted considerable attention in material sciences. Here we systematically demonstrate the diverse lattice dynamics of the ternary Cu-Sb-Se...
8.
Qiu W, Xi L, Wei P, Ke X, Yang J, Zhang W
Proc Natl Acad Sci U S A
. 2014 Oct;
111(42):15031-5.
PMID: 25288751
Understanding thermal and phonon transport in solids has been of great importance in many disciplines such as thermoelectric materials, which usually requires an extremely low lattice thermal conductivity (LTC). By...
9.
Ojwang J, McWilliams R, Ke X, Goncharov A
J Chem Phys
. 2012 Aug;
137(6):064507.
PMID: 22897293
Raman spectroscopy and synchrotron x-ray diffraction measurements of ammonia (NH(3)) in laser-heated diamond anvil cells, at pressures up to 60 GPa and temperatures up to 2500 K, reveal that the...
10.
Zhang Y, Ke X, Kent P, Yang J, Chen C
Phys Rev Lett
. 2011 Nov;
107(17):175503.
PMID: 22107535
A recent report of highly unusual ferroelectric fluctuations in PbTe by E. S. Božin et al. [Science 330, 1660 (2010)] raises fundamental questions about the nature of underlying lattice dynamics....