2020
DOI: 10.1016/j.ceramint.2020.07.209
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Effective dopants for CuI single nanocrystals as a promising room temperature thermoelectric material

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Cited by 18 publications
(30 citation statements)
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“…The bare CuI lm showed diffraction peaks at 25.5 , 29.5 , 42.2 , 49.9 2q which correspond to the (111), (200), (220), and (311) planes, respectively. This conrms the cubic crystal structure of CuI (DB card number 01-077-9398) which is consistent with previously reported results 23. The XRD patterns of the Al-doped CuI thin lm samples are comparable to those of the bare samples, with no impurity phases.…”
supporting
confidence: 91%
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“…The bare CuI lm showed diffraction peaks at 25.5 , 29.5 , 42.2 , 49.9 2q which correspond to the (111), (200), (220), and (311) planes, respectively. This conrms the cubic crystal structure of CuI (DB card number 01-077-9398) which is consistent with previously reported results 23. The XRD patterns of the Al-doped CuI thin lm samples are comparable to those of the bare samples, with no impurity phases.…”
supporting
confidence: 91%
“…This conrms the cubic crystal structure of CuI (DB card number 01-077-9398) which is consistent with previously reported results. 23 The XRD patterns of the Al-doped CuI thin lm samples are comparable to those of the bare samples, with no impurity phases. For the Al-doped CuI thin lm samples, due to the reduced ionic radius of Al 3+ (53 pm) compared to that of Cu + (77 pm), the diffraction peaks showed a modest shi towards higher 2q values (Fig.…”
Section: Electrochemical Measurementsmentioning
confidence: 77%
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“…Further, 300 nm thick CuI film doped with terbium (Tb) single nanocrystal demonstrated a ZT max value of 0.29. The illustration of the Tb-doped CuI structure is given in Figure 2 f, which can be operated at 430 K [ 13 ]. The current ZT progress of CuI-based TE materials is given in Table 1 .…”
Section: Temperature-dependent Classification Of Low-toxic Earth-abundant Thermoelectric Materialsmentioning
confidence: 99%
“…Copyright © 2019, Royal Society of Chemistry, ( e ) Schematic representation of transparent flexible copper iodide thin-film thermoelectric generator (p-type material is CuI and n-type material is GZO) with 17 p-n modules connected in series with indium tin oxide (ITO) using platinum wire, Reproduced with permission from [ 12 ]. Copyright © 2019, Royal Society of Chemistry, ( f ) Illustration of CuI (doped with terbium) single nanocrystal, Reproduced with permission from [ 13 ]. Copyright © 2020, Elsevier.…”
Section: Figurementioning
confidence: 99%