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21 to 30 of 43 Results
ZIP Archive - 791.6 KB - MD5: f7e9f4e0d8b456649d23f187e5214dfd
ZIP Archive - 4.8 MB - MD5: e3a0770d5d4e3836788e741fae046983
Aug 1, 2019 - SUM Tze Chien
Giovanni, David; Lim, Jia Wei Melvin; Yuan, Zhongcheng; Lim, Swee Sien; Righetto, Marcello; Qing, Jian; Zhang, Qiannan; Dewi, Herlina Arianita; Gao, Feng; Mhaisalkar, Subodh Gautam; Mathews, Nripan; Sum, Tze Chien, 2019, "Replication Data For: Ultrafast long-range spin-funneling in solution-processed Ruddlesden-Popper halide perovskites", https://doi.org/10.21979/N9/DUMOTD, DR-NTU (Data), V1
Room-temperature spin-based electronics is the vision of spintronics. Presently, there are few suitable material systems. Herein, we reveal that solution-processed mixed-phase Ruddlesden-Popper perovskite thin-films transcend the challenges of phonon momentum-scattering that limi...
RAR Archive - 1.3 MB - MD5: 62dd9c5edababce8d1889ad7bd5fbd1a
Data
Data for replication and high-resolution image for Figure 1.
RAR Archive - 2.4 MB - MD5: ff88ccaca7cf5636ca3d49a82deadc1e
Data
Data for replication and high-resolution image for Figure 2
RAR Archive - 2.1 MB - MD5: fb3f470658a120dbaca6312c379de6ee
Data
Data for replication and high-resolution image for Figure 3
RAR Archive - 3.9 MB - MD5: e12a2fd6d79ff1c36327588ebb14d15d
Data
Data for replication and high-resolution image for Figure 4
RAR Archive - 14.2 MB - MD5: a2c5bc95f1ad664bc61c2654e39a70f5
Data
Data for replication and high-resolution images for Supplementary Figures (total of 9 figures).
May 31, 2019 - SUM Tze Chien
Giovanni, David; Chong, Wee Kiang; Dewi, Herlina Arianita; Thirumal, Krishnamoorthy; Neogi, Ishita; Ramesh, Ramamoorthy; Mhaisalkar, Subodh; Mathews, Nripan; Sum, Tze Chien, 2019, "Replication Data for: Tunable room-temperature spin-selective optical Stark effect in solution-processed layered halide perovskites", https://doi.org/10.21979/N9/BWMJDV, DR-NTU (Data), V2
Ultrafast spin manipulation for opto–spin logic applications requires material systems that have strong spinselective light-matter interaction. Conventional inorganic semiconductor nanostructures [for example, epitaxial II-VI quantum dots and III-V multiple quantum wells (MQWs)]...
RAR Archive - 11.7 MB - MD5: 8c0b4f7e57da9d733e33f54ceccb5287
Compilation of all raw data and analysis grouped based on figures in the publication.
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