2018
DOI: 10.1016/j.nanoen.2018.10.023
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Efficient composition tuning via cation exchange and improved reproducibility of photovoltaic performance in FA MA1-PbI3 planar heterojunction solar cells fabricated by a two-step dynamic spin-coating process

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Cited by 33 publications
(35 citation statements)
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“…that the diffraction peaks at 14.2°, 19.9°, 24.4°, 28.4°, 31.8°, 34.9°, 40.6°, 43.2°, 50.3°, 52.5°, 54.6°and 60.7°are assigned to the cubic α perovskite crystal phase with high crystallinity. Meanwhile, a diffraction pattern of PbI 2 at 12.7°is observed[24,[26][27][28][29]. These results demonstrate the formation of PbI 2 which is similar to the results reported by others[27,30].…”
supporting
confidence: 90%
“…that the diffraction peaks at 14.2°, 19.9°, 24.4°, 28.4°, 31.8°, 34.9°, 40.6°, 43.2°, 50.3°, 52.5°, 54.6°and 60.7°are assigned to the cubic α perovskite crystal phase with high crystallinity. Meanwhile, a diffraction pattern of PbI 2 at 12.7°is observed[24,[26][27][28][29]. These results demonstrate the formation of PbI 2 which is similar to the results reported by others[27,30].…”
supporting
confidence: 90%
“…103 As for A-site CERs, most reported studies focused on organic-inorganic hybrid perovskites such as MAPbX 3 with FA + or PEA + . [104][105][106][107] For fully inorganic perovskite NCs, Soon and colleagues reported the potential influence of a CER between lead-free CsSnI 3 and Rb + . On the basis of first-principle density functional theory calculations, the chemical structure and physical properties of Rb x Cs 1Àx SnI 3 were investigated.…”
Section: àmentioning
confidence: 99%
“…S1A). The energy level alignment of the materials in this structure (17)(18)(19)(20) is presented in Fig. 1D.…”
Section: Resultsmentioning
confidence: 99%