501 to 510 of 818 Results
May 27, 2020 -
Replication Data for: Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators
RAR Archive - 145.9 KB -
MD5: 22e26d540da49a8f2152fc4f92ac8407
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May 27, 2020 -
Replication Data for: Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators
RAR Archive - 63.3 KB -
MD5: 1f760725b2555432a6175ad7f92be13f
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May 27, 2020 -
Replication Data for: Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators
RAR Archive - 379.8 KB -
MD5: 10148258d0208d22a86b17edf2360ebc
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May 27, 2020 -
Replication Data for: Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators
RAR Archive - 163.9 KB -
MD5: 0c5ebf77ab8d0be7c11692e796f642f6
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May 27, 2020 -
Replication Data for: Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators
RAR Archive - 209.2 KB -
MD5: 4a9eb00d54a5ef8c84d9ed03b6bb2424
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May 5, 2020 - Manukumara Manjappa
Manjappa, Manukumara; Solanki, Solanki; Kumar, Abhishek; Sum, Tze Chien; Singh, Ranjan, 2020, "Replication data: Solution‐Processed Lead Iodide for Ultrafast All‐Optical Switching of Terahertz Photonic Devices", https://doi.org/10.21979/N9/ELRXN4, DR-NTU (Data), V2, UNF:6:Us+ae5DF/P7Hrk8nuu8U6A== [fileUNF]
Solution‐processed lead iodide (PbI2) governs the charge transport characteristics in the hybrid metal halide perovskites. Besides being a precursor in enhancing the performance of perovskite solar cells, PbI2 alone offers remarkable optical and ultrasensitive photoresponsive pro... |
May 1, 2020 - Ankur Solanki
Ankur, Solanki; Mohammad Mahdi Tavakoli; Qiang Xu; Sai S.H. Dintakurti; Swee Sien Lim; Anirban Bagui; John V. Hanna; Jing Kong; Sum, Tze Chien, 2020, "Replication Data for: Heavy Water Additive in Formamidinium: A Novel Approach to Enhance Perovskite Solar Cell Efficiency", https://doi.org/10.21979/N9/31GZP9, DR-NTU (Data), V1
Heavy water or deuterium oxide (D2O) comprises of deuterium, a hydrogen isotope twice the mass of hydrogen. Contrary to the disadvantages of deuterated perovskites, such as shorter recombination lifetimes and lower/invariant efficiencies, we herein divulge the serendipitous effec... |
May 1, 2020 -
Replication Data for: Heavy Water Additive in Formamidinium: A Novel Approach to Enhance Perovskite Solar Cell Efficiency
RAR Archive - 33.4 KB -
MD5: 60c7e0f4420af8ee84460bcfff771590
(b) J-V curves of the PSCs without (reference) and with 1 vol% H2O or 1 vol% D2O. Inset graph shows the MPP of the corresponding PSCs for the J-V curves of other devices). (c) EQE spectra of the champion devices. (d) Statistical spread of the PCEs for the reference and devices wi... |
May 1, 2020 -
Replication Data for: Heavy Water Additive in Formamidinium: A Novel Approach to Enhance Perovskite Solar Cell Efficiency
RAR Archive - 2.9 MB -
MD5: 11c643ff5773a4a17f66b6b701f2d1b7
Photoluminescence properties of films prepared with added 0% (reference), 1%, 4% D2O and 1% H2O by vol. in perovskite solution. The symbols denote the experimental data while the solid lines are model fits. (a) PL lifetimes of perovskite samples: control (0%; red square), 1 vol%... |
May 1, 2020 -
Replication Data for: Heavy Water Additive in Formamidinium: A Novel Approach to Enhance Perovskite Solar Cell Efficiency
RAR Archive - 46.4 MB -
MD5: 15f7a9029522439eb55106105da9e6d7
(a) Fourier Transform Infrared (FTIR) spectra of perovskite prepared with 0% (reference), 1% D2O added solutions. The appearance of a new vibrational band between 2337 cm-1 to 2360 cm-1, shows the presence of deuterium. Measured multinuclear MAS NMR data showing, (b) 2H MAS NMR s... |
