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Python Source Code - 1.3 KB -
MD5: 7082a2ce046f9ed1932e2c2b99649bcc
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Python Source Code - 2.7 KB -
MD5: cb49015659323e742d1e31c4a171bd12
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Python Source Code - 4.5 KB -
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Jan 15, 2019 - Li Mingjie
Li, Mingjie; Raihana Begum; Jianhui Fu; Qiang Xu; Teck Ming Koh; Sjoerd A. Veldhuis; Michael Grätzel; Nripan Mathews; Subodh Mhaisalkar; Sum, Tze Chien, 2019, "Replication Data for: Low threshold and efficient multiple exciton generation in halide perovskite nanocrystals", https://doi.org/10.21979/N9/HJGXR3, DR-NTU (Data), V1
Multiple exciton generation (MEG) or carrier multiplication, a process that spawns two or more electron–hole pairs from an absorbed high-energy photon (larger than two times bandgap energy Eg), is a promising way to augment the photocurrent and overcome the Shockley–Queisser limi... |
Jan 15, 2019 -
Replication Data for: Low threshold and efficient multiple exciton generation in halide perovskite nanocrystals
RAR Archive - 276.2 KB -
MD5: 28d1d5d7df1308140701862b587fadf5
data of Fig 1 in main text |
Jan 15, 2019 -
Replication Data for: Low threshold and efficient multiple exciton generation in halide perovskite nanocrystals
RAR Archive - 1.3 MB -
MD5: 2eb7acb2c83ca48a708166fb6e87d3c5
data of Fig 2 in main text |
Jan 15, 2019 -
Replication Data for: Low threshold and efficient multiple exciton generation in halide perovskite nanocrystals
RAR Archive - 148.9 KB -
MD5: 12a6c9b93a7f4f548b21ece19a3491e2
data of Fig 3 in main text |
Jan 15, 2019 -
Replication Data for: Low threshold and efficient multiple exciton generation in halide perovskite nanocrystals
RAR Archive - 968.3 KB -
MD5: 7a7305bb8f83e2f54f3432d5e92ea418
data of Fig 4 in main text |
Jan 15, 2019 -
Replication Data for: Low threshold and efficient multiple exciton generation in halide perovskite nanocrystals
RAR Archive - 154.9 KB -
MD5: eadbe96fe3d25f55a6e4d4c0c5968c21
data of Fig s10 in the supporting information |
Jan 15, 2019 -
Replication Data for: Low threshold and efficient multiple exciton generation in halide perovskite nanocrystals
RAR Archive - 78.8 KB -
MD5: 4fcf169981af674f7db949de92c2b864
data of Fig s11 in the supporting information |
