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Jun 11, 2019 -
Replication Data for: Tunable Ferroelectricity in Ruddlesden-Popper Halide Perovskites
ZIP Archive - 44.9 MB -
MD5: 22cbe076ccdfbbf3b450fcf4842fe732
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Jun 11, 2019 -
Replication Data for: Tunable Ferroelectricity in Ruddlesden-Popper Halide Perovskites
ZIP Archive - 298.9 KB -
MD5: abff6d27e32a5662ed88e856f25f9ce8
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Jun 11, 2019 -
Replication Data for: Tunable Ferroelectricity in Ruddlesden-Popper Halide Perovskites
ZIP Archive - 743.3 KB -
MD5: 2b48f85e0c376195ca4c67fcfc8723c2
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Jun 11, 2019 -
Replication Data for: Tunable Ferroelectricity in Ruddlesden-Popper Halide Perovskites
ZIP Archive - 1.0 MB -
MD5: b9aab7f7e78514f7557e66840d5a5c1e
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Jun 11, 2019 -
Replication Data for: Tunable Ferroelectricity in Ruddlesden-Popper Halide Perovskites
ZIP Archive - 40.3 KB -
MD5: c1d75ff0746b7d11a71c28ff3f4e1b8b
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Jun 11, 2019 -
Replication Data for: Tunable Ferroelectricity in Ruddlesden-Popper Halide Perovskites
ZIP Archive - 23.3 KB -
MD5: 3523804b8c2aec708dfbb6aaca2f0432
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Jun 11, 2019
Appointment: PhD Student (Graduated) |
May 31, 2019 - FU Jianhui
Fu, Jianhui, 2019, "Replication Data for: Hot Carrier Cooling Mechanisms in Halide Perovskites", https://doi.org/10.21979/N9/VJGWT3, DR-NTU (Data), V1
Halide perovskites exhibit unique slow hot-carrier cooling properties capable of unlocking disruptive perovskite photon–electron conversion technologies (e.g., high-efficiency hotcarrier photovoltaics, photo-catalysis, and photodetectors). Presently, the origins and mechanisms of... |
RAR Archive - 23.9 MB -
MD5: 881ed09436a2bca4fb849fcec4e39974
data for figure1 in the main text |
RAR Archive - 12.2 MB -
MD5: e6febd90159763949d1e1ec8bc6a3e52
data for figure 2 in the main text |
