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   <ref-type name="Journal Article">17</ref-type>
   <contributors>
    <authors>
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    </authors>
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   <titles>
    <title></title>
   </titles>
   <dates>
    <year>2023</year>
    <pub-dates>
     <date>2023-05-10</date>
    </pub-dates>
   </dates>
   <doi>10.32523/ejpfm.2023070105</doi>
   <abstract>The paper presents the results of the studies of thermal properties of nanocrystalline superionic&#13;
NaxCu1.75S (x=0.1, 0.15, 0.2, 25) compositions, and preliminary results of Na0.1Cu1.75S using as energy&#13;
stored cathode material in Na-ion half-cell with NaPF 6 electrolyte and Na anode. The compositions&#13;
contain a few copper sulfide phases: monoclinic chalcocite Cu2S , orthorhombic anilite Cu1.75S , triclinic roxbyite Cu1.74÷1.82S , also the compositions can contain monoclinic Na2Cu4S3 , orthorhombic&#13;
Na2S , cubic Cu2O as inclusion phases. The sizes of powder particles lie in the range from 10 to&#13;
113 nm. Differential scanning calorimetry revealed in Na0.1Cu1.75S the endothermic thermal effects&#13;
with critical temperatures near 123 ◦ C, 42 ◦ C and 442 ◦ C, caused by structural transitions in copper&#13;
sulfide. Fourth endothermic peak at 323 ◦ C presumably belongs to Na2S phase. The minimum for&#13;
the Fermi level at about 420 ◦ C is found with using of the e.m.f. E of the electrochemical cell of the&#13;
Cu/CuBr/Na0.10Cu1.75S/Pt , which corresponds to minimum for the carrier concentration. This conclusion correlates well with the observed conductivity minimum at about 410 ◦ C. Electrode material&#13;
Na0.10Cu1.75S achieved a significant specific energy density 146.5 mAh/g in half-cell assembled from&#13;
the cathode active material, electrolyte (NaPF 6 in 0.5 mol PC) and Na anode.</abstract>
   <urls>
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     <url>https://repo.bashgmu.ru/publication/2582</url>
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    <pdf-urls>
     <url>https://repo.bashgmu.ru/files/2758</url>
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