I-V-VI(2) ternary chalcogenides are gaining attention as earth-abundant, nontoxic, and air-stable absorbers for photovoltaic applications. However, the semiconductors explored thus far have slowly-rising absorption onsets, and their charge-carrier transport is not well understood yet. Herein, we investigate cation-disordered NaBiS(2) nanocrystals, which have a steep absorption onset, with absorption coefficients reaching >10(5)âcm(-1) just above its pseudo-direct bandgap of 1.4âeV. Surprisingly, we also observe an ultrafast (picosecond-time scale) photoconductivity decay and long-lived charge-carrier population persisting for over one microsecond in NaBiS(2) nanocrystals. These unusual features arise because of the localised, non-bonding S p character of the upper valence band, which leads to a high density of electronic states at the band edges, ultrafast localisation of spatially-separated electrons and holes, as well as the slow decay of trapped holes. This work reveals the critical role of cation disorder in these systems on both absorption characteristics and charge-carrier kinetics.
Strong absorption and ultrafast localisation in NaBiS(2) nanocrystals with slow charge-carrier recombination.
NaBiS(2)纳米晶体具有强吸收和超快局域化特性,同时电荷载流子复合缓慢。
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| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2022 | 起止号: | 2022 Aug 24; 13(1):4960 |
| doi: | 10.1038/s41467-022-32669-3 | ||
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