KARAKKAL HIBA HANEENA

Ruolo:
Assegnista di ricerca
Settore scientifico disciplinare:
Fisica sperimentale (FIS/01)

Pubblicazioni

  • Karakkal, H (2026). HETEROSTRUCTURING ACROSS NANOCRYSTAL PLATFORMS: FROM EMITTER-CENTRIC DESIGNS TO PLASMON-ENHANCED PHOTONIC ENVIRONMENTS. (Tesi di dottorato, , 2026). Dettaglio

  • Karakkal, H., Chakraborty, S., Zaffalon, M., Llusar, J., Gul, S., Fratelli, A., et al. (2026). Halide-Exchange Arrest Enables Reabsorption-Free CsPbCl3/CsPbI3 Perovskite Core/Shell Nanocrystals. ADVANCED SCIENCE [10.1002/advs.202520883]. Dettaglio

  • Liu, Z., Llusar, J., Karakkal, H., Zhu, D., Ivanov, Y., Prato, M., et al. (2025). Photophysics of InAs@InP@ZnSe core@shell@shell Quantum Dots Synthesized Using Amino-Arsine and Amino-Phosphine Based Precursors. Intervento presentato a: MATSUS Spring 2025, Seville, Spain. Dettaglio

  • Zhu, D., Llusar, J., Asaithambi, A., Liu, Z., Bes, R., Prieur, D., et al. (2025). Unveiling the Role of ZnCl2 in Enhancing the Photoluminescence Efficiency of Amino-As-Based InAs@ZnSe Quantum Dots. ACS NANO, 19(39), 34807-34818 [10.1021/acsnano.5c10371]. Dettaglio

  • Liu, Z., Llusar, J., Karakkal, H., Zhu, D., Ivanov, Y., Prato, M., et al. (2024). Amino-Arsine and Amino-Phosphine Based Synthesis of InAs@InP@ZnSe core@shell@shell Quantum Dots. ADVANCED ENERGY MATERIALS, 14(47) [10.1002/aenm.202402246]. Dettaglio