Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Daphné Lubert-Perquel"'
Autor:
Daphné Lubert-Perquel, Enrico Salvadori, Matthew Dyson, Paul N. Stavrinou, Riccardo Montis, Hiroki Nagashima, Yasuhiro Kobori, Sandrine Heutz, Christopher W. M. Kay
Publikováno v:
Nature Communications, Vol 9, Iss 1, Pp 1-10 (2018)
Singlet fission results in the formation of a pair of triplets, known as a quintet. Here, the authors identify long-lived quintets in dilute pentacene films at room temperature, with lifetimes influenced by intermolecular geometry having implications
Externí odkaz:
https://doaj.org/article/28a44ae0ca044974a71e7e5b6443c253
Autor:
Duncan H. Moseley, Zhiming Liu, Alexandria N. Bone, Shelby E. Stavretis, Saurabh Kumar Singh, Mihail Atanasov, Zhengguang Lu, Mykhaylo Ozerov, Komalavalli Thirunavukkuarasu, Yongqiang Cheng, Luke L. Daemen, Daphné Lubert-Perquel, Dmitry Smirnov, Frank Neese, A. J. Ramirez-Cuesta, Stephen Hill, Kim R. Dunbar, Zi-Ling Xue
Publikováno v:
Inorganic Chemistry. 61:17123-17136
Akademický článek
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Autor:
Anna Regoutz, Laia Francàs, Daphné Lubert-Perquel, Ravi Shankar, Camille Petit, Gwilherm Kerherve, Michael Sachs
Publikováno v:
Journal of Materials Chemistry A. 7:23931-23940
Porous and amorphous materials are typically not employed for photocatalytic purposes, like CO2 photoreduction, as their high number of defects can lead to low charge mobility and favour bulk electron–hole recombination. Yet, with a disordered natu
Boron-Doped Boron Nitride Photocatalyst for Visible Light-Driven H2 Evolution and CO2 Photoreduction
Autor:
Daphné Lubert-Perquel, Ravi Shankar, Sandrine Heutz, Irena Nevjestić, Elan Mistry, Camille Petit
Developing robust, multifunctional photocatalysts that can facilitate both hydrogen evolution via photoreforming of water and gas phase CO2 photoreduction is highly desirable with the long-term vision of integrated photocatalytic setups. Here, we pre
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::46f2b60d5a191652f67e3109462c81d2
https://doi.org/10.26434/chemrxiv.12333314
https://doi.org/10.26434/chemrxiv.12333314
Autor:
Ravi Shankar, Daphné Lubert-Perquel, Elan Mistry, Irena Nevjestić, Sandrine Heutz, Camille Petit
Developing robust, multifunctional photocatalysts that can facilitate both hydrogen evolution via photoreforming of water and gas phase CO2 photoreduction is highly desirable with the long-term vision of integrated photocatalytic setups. Here, we pre
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::3bb05a7251b674f48f8b0e54ce9dc1fa
https://doi.org/10.26434/chemrxiv.12333314.v1
https://doi.org/10.26434/chemrxiv.12333314.v1
Thin films of pentacene and p-terphenyl were grown via organic molecular beam deposition to enable solid-state dilution of functional molecules (pentacene) in an inert matrix (p-terphenyl) at higher concentrations than permitted by traditional crysta
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a181edb263b57e87c2040581cfe03697
Correction for ‘Comparison of organic and inorganic layers for structural templating of pentacene thin films’ by Dong Kuk Kim et al., Mater. Horiz., 2019, DOI: 10.1039/c9mh00355j. The authors wish to amend the Acknowledgements section of the orig
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::04c6c1231cc077965a870b7cf9e7b229
http://hdl.handle.net/10044/1/78163
http://hdl.handle.net/10044/1/78163
Pentacene is a key organic semiconductor, which has achieved prominence in transistor applications and as an archetypal material for singlet fission, the process whereby the absorption of one photon leads to the formation of two triplet states. Funct
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::da033fab51aa9e5bae3dde429fb6a59c
http://hdl.handle.net/10044/1/71819
http://hdl.handle.net/10044/1/71819
Autor:
Anna Regoutz, Ravi Shankar, Michael Sachs, Daphné Lubert-Perquel, Camille Petit, Gwilherm Kerherve, Laia Francàs
Publikováno v:
Proceedings of the nanoGe Fall Meeting 2019.