Liberato Manna
Affiliations: | Nanochemistry | Italian Institute of Technology, Genoa, United States |
Area:
synthesis and assembly of colloidal nanocrystalsWebsite:
http://www.iit.it/en/nach-people/liberato-manna.htmlGoogle:
"Liberato Manna"Bio:
https://publons.com/researcher/1639073/liberato-manna/
https://orcid.org/0000-0003-4386-7985
http://scholar.google.com/citations?user=hWWqp5MAAAAJ&hl=en
Mean distance: 8.02 | S | N | B | C | P |
Parents
Sign in to add mentorCarmelo Giacovazzo | research assistant | University of Bari | |
A. Paul Alivisatos | post-doc | 2001-2003 | UC Berkeley |
Children
Sign in to add traineeLuigi Carbone | research assistant | ||
Quinten A. Akkerman | grad student | ETH Zürich | |
Andrea Paolella | grad student | 2010-2013 | Istituto italiano di tecnologia (IIT) |
Javad Shamsi | grad student | 2014-2018 | |
Guilherme Almeida | grad student | 2014-2019 | |
Milena Arciniegas | post-doc | IIT | |
Dipak Shinde | post-doc | 2015-2021 | |
Dmitry Baranov | post-doc | 2017-2022 | IIT |
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Publications
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Milloch A, Filippi U, Franceschini P, et al. (2024) Fate of Optical Excitons in FAPbI Nanocube Superlattices. Acs Photonics. 11: 3511-3520 |
Li Z, Goldoni L, Wu Y, et al. (2024) Exogenous Metal Cations in the Synthesis of CsPbBr Nanocrystals and Their Interplay with Tertiary Amines. Journal of the American Chemical Society |
Rojas-Gatjens E, Akkerman QA, Manna L, et al. (2024) Exciton-photocarrier interference in mixed lead-halide-perovskite nanocrystals. The Journal of Chemical Physics. 160 |
Milloch A, Filippi U, Franceschini P, et al. (2023) Halide Perovskite Artificial Solids as a New Platform to Simulate Collective Phenomena in Doped Mott Insulators. Nano Letters. 23: 10617-10624 |
Prabhakaran A, Dang Z, Dhall R, et al. (2023) Real-Time In Situ Observation of CsPbBr Perovskite Nanoplatelets Transforming into Nanosheets. Acs Nano |
Prabhakaran A, Dhanabalan B, Andrusenko I, et al. (2023) Stable Sn-Based Hybrid Perovskite-Related Structures with Tunable Color Coordinates via Organic Cations in Low-Temperature Synthesis. Acs Energy Letters. 8: 2630-2640 |
Zhu D, Jalali HB, Saleh G, et al. (2023) Boosting the Photoluminescence Efficiency of InAs Nanocrystals Synthesized with Aminoarsine via a ZnSe Thick-shell Overgrowth. Advanced Materials (Deerfield Beach, Fla.). e2303621 |
Toso S, Baranov D, Filippi U, et al. (2022) Collective Diffraction Effects in Perovskite Nanocrystal Superlattices. Accounts of Chemical Research. 56: 66-76 |
Bahmani Jalali H, De Trizio L, Manna L, et al. (2022) Indium arsenide quantum dots: an alternative to lead-based infrared emitting nanomaterials. Chemical Society Reviews |
Avugadda SK, Castelli A, Dhanabalan B, et al. (2022) Highly Emitting Perovskite Nanocrystals with 2-Year Stability in Water through an Automated Polymer Encapsulation for Bioimaging. Acs Nano |