2021
DOI: 10.26434/chemrxiv.13578320.v1
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Crystal Structure and Electrical/thermal Transport Properties of Li1-xSn2+xP2 and Its Performance as a Li-Ion Battery Anode Material

Abstract: A new ternary layered pnictide, Li<sub>1-x</sub>Sn<sub>2+x</sub>P<sub>2</sub>, was synthesized by a solid-state reaction and its properties were examined to explore its potential as a multifunctional material. The compound crystallizes in a layered structure in the R-3m space group with buckled honeycomb Sn-P layers separated by mixed-occupation Li/Sn layers. Crystal structure analysis using synchrotron X-ray diffraction showed that the substitution degree of Li by Sn (x) is… Show more

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“…38 Moreover, low thermal conductivity has been demonstrated for Li1−xSn2+xAs(P)2, mainly because of their local ordering. 39,40 Direction-dependent carrier polarity has been demonstrated for NaSn2As2 and NaSnAs, suggesting its applicability for transverse thermoelectric conversion. [41][42][43] In addition to being thermoelectric materials, these compounds are interesting because they undergo superconducting transitions at low temperatures.…”
Section: Introductionmentioning
confidence: 99%
“…38 Moreover, low thermal conductivity has been demonstrated for Li1−xSn2+xAs(P)2, mainly because of their local ordering. 39,40 Direction-dependent carrier polarity has been demonstrated for NaSn2As2 and NaSnAs, suggesting its applicability for transverse thermoelectric conversion. [41][42][43] In addition to being thermoelectric materials, these compounds are interesting because they undergo superconducting transitions at low temperatures.…”
Section: Introductionmentioning
confidence: 99%