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論文

Enhanced covalency and nanostructured-phonon scattering lead to high thermoelectric performance in $$n$$-type PbS

Rathore, E.*; Juneja, R.*; Sarkar, D.*; Roychowdhury, S.*; 古府 麻衣子; 中島 健次; Singh, A. K.*; Biswas, K.*

Materials Today Energy (Internet), 24, p.100953_1 - 100953_9, 2022/03

 被引用回数:12 パーセンタイル:87.17(Chemistry, Physical)

We demonstrate a high thermoelectric figure of merit (zT) of 1.45 at 900 K for Ge doped (4-10 mol%) $$n$$-type PbS, which is the one of the highest values among all $$n$$-type PbS-based thermoelectric materials. This high performance is achieved by simultaneous (a) enhancement of covalency in chemical bonding which increases the electrical conductivity, and (b) reduction of lattice thermal conductivity to an ultra-low value of 0.56 W m$$^{-1}$$K$$^{-1}$$ at 900 K by the introduction of nanometer-sized (5-10 nm) precipitates of Pb$$_{2}$$GeS$$_{4}$$ in PbS matrix which strongly scatter the heat-carrying phonons. The presence of low-lying transverse acoustic (TA) and longitudinal acoustic (LA) phonon modes at 48.24 cm$$^{-1}$$ and 91.83 cm$$^{-1}$$, respectively are experimentally revealed from inelastic neutron scattering (INS) experiments. The softening of low-frequency modes at a higher temperature and ultra-short phonon lifetime (1-4.5 ps) further explain the ultra-low thermal conductivity.

論文

Fission of $$^{180,182,183}$$Hg* and $$^{178}$$Pt* nuclei at intermediate excitation energies

Kozulin, E. M.*; Knyazheva, G. N.*; Itkis, I. M.*; Itkis, M. G.*; Mukhamejanov, Y. S.*; Bogachev, A. A.*; Novikov, K. V.*; Kirakosyan, V. V.*; Kumar, D.*; Banerjee, T.*; et al.

Physical Review C, 105(1), p.014607_1 - 014607_12, 2022/01

 被引用回数:6 パーセンタイル:95.95(Physics, Nuclear)

Asymmetric fission in the neutron-deficient Hg region was first observed about 10 years ago at ISOLDE, and caused a revision of the current understanding of fission in this region. In this work, the fission of $$^{180,182,183}$$Hg and $$^{178}$$Pd were studied using the time-of-flight spectrometer CORSET at the Flerov Laboratory in Dubna. The observed fission fragments mass distributions of the different isotopes suggest the presence of four concurrent fission modes, one symmetric and three asymmetric fission modes. The asymmetric modes differ in the total kinetic energies and fragment mass splits. These results point out the existence of a well deformed proton shell at $$Z$$=36 and a less deformed proton shell at $$Z$$=46.

論文

Asymmetric and symmetric fission of excited nuclei of $$^{180,190}$$Hg and $$^{184,192,202}$$Pb formed in the reactions with $$^{36}$$Ar and $$^{40,48}$$Ca ions

Bogachev, A. A.*; Kozulin, E. M.*; Knyazheva, G. N.*; Itkis, I. M.*; Itkis, M. G.*; Novikov, K. V.*; Kumar, D.*; Banerjee, T.*; Diatlov, I. N.*; Cheralu, M.*; et al.

Physical Review C, 104(2), p.024623_1 - 024623_11, 2021/08

 被引用回数:10 パーセンタイル:92.98(Physics, Nuclear)

$$^{180,190}$$Hg及び$$^{184,192,202}$$Pb核の非対称及び対称核分裂モードの研究のため、$$^{36}$$Ar + $$^{144,154}$$Sm,$$^{40}$$Ca + $$^{144}$$Sm反応で生成した$$^{180,190}$$Hg及び$$^{184}$$Pbの質量-エネルギー分布の測定を行った。クーロン障壁エネルギー近傍のエネルギーにおいて、質量-エネルギー分布は二重アーム飛行時間型スペクトロメータCORSETを用いて測定し、以前に測定した$$^{192,202}$$Pb同位体と比較した。結論として、$$^{180,190}$$Hgと$$^{184,192,202}$$Pb核の非対称核分裂の研究特性はZ$$approx$$36では変形した陽子殻の存在を、Z$$approx$$46では変形しない陽子殻の存在を指摘した。

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