7,791 to 7,800 of 7,967 Results
7Z Archive - 15.1 KB -
MD5: 705a924d6bcfef5bd78c1b53503e9c72
Light J-V characteristics of solar cell devices fabricated with perovskite
flms consisting different cations. |
7Z Archive - 1.3 MB -
MD5: 83096f978e99a27fa618c450d7787eab
(a) Photoexcited carrier density as a function of integrated PL intensity of different perovskite films measured in the low fluence regime: solid lines are the corresponding fts of the experimental data with the trap density model, (b) mono-exponential fitting of low fluence PL kin... |
7Z Archive - 1.5 MB -
MD5: 03715484a83110b52ff991c4c4a1f066
Recombination rates and diffusion lengths |
7Z Archive - 124.9 KB -
MD5: 85594968548f5445fa3a8f0d326a8109
A plot of the variation of photoluminescence quantum yield (PLQY), VOC and fll
factor in relation to different cation-based perovskite flms. |
7Z Archive - 1.5 MB -
MD5: f08eedb1d13b93298b8ed4faf5dc6d69
SI |
May 31, 2019 -
Replication Data for: Tunable room-temperature spin-selective optical Stark effect in solution-processed layered halide perovskites
RAR Archive - 11.7 MB -
MD5: 8c0b4f7e57da9d733e33f54ceccb5287
Compilation of all raw data and analysis grouped based on figures in the publication. |
Apr 15, 2019 - Li Mingjie
Li, Mingjie; Qi Wei; Subas Kumar Muduli; Natalia Yantara; Qiang Xu; Nripan Mathews; Subodh G. Mhaisalkar; Guichuan Xing; Sum, Tze Chien, 2019, "Replication Data for: Enhanced Exciton and Photon Confinement in Ruddlesden-Popper Perovskite Microplatelets for Highly Stable Low-Threshold Polarized Lasing", https://doi.org/10.21979/N9/VEJNT0, DR-NTU (Data), V1
At the heart of electrically driven semiconductors lasers lies their gain medium that typically comprises epitaxially grown double heterostuctures or multiple quantum wells. The simultaneous spatial confinement of charge carriers and photons afforded by the smaller bandgaps and h... |
RAR Archive - 3.0 MB -
MD5: fd9bedcd8cb9645743e5d00b3ea3564e
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RAR Archive - 7.0 MB -
MD5: cc5ed46e7d2a43fb7c4deb1dacdd7e10
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RAR Archive - 3.0 MB -
MD5: 15f0d02afd6fd96307786c683ad1a250
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