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Dive into the research topics where Vincent Troiani is active.

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Featured researches published by Vincent Troiani.


Journal of Materials Chemistry | 2007

Organic solar cells. Supramolecular composites of porphyrins and fullerenes organized by polypeptide structures as light harvesters

Taku Hasobe; Kenji Saito; Prashant V. Kamat; Vincent Troiani; Hongjin Qiu; Nathalie Solladié; Kil Suk Kim; Jong Kang Park; Dongho Kim; Francis D'Souza; Shunichi Fukuzumi

We have constructed supramolecular solar cells composed of a series of porphyrin–peptide oligomers [porphyrin functionalized α-polypeptides, P(H2P)n or P(ZnP)n (n = 1, 2, 4, 8, 16)], and fullerenes assembled on a nanostructured SnO2 electrode using an electrophoretic deposition method. Remarkable enhancement in the photoelectrochemical performance as well as the broader photoresponse in the visible and near-infrared regions is seen with increasing the number of porphyrin units in α-polypeptide structures. Formation of supramolecular clusters of porphyrins and fullerenes prepared in acetonitrile–toluene = 3 : 1 has been confirmed by transmission electron micrographs (TEM) and the absorption spectra. The highly colored composite clusters of porphyrin–peptide oligomers and fullerenes have been assembled as three-dimensional arrays onto nanostructured SnO2 films using an electrophoretic deposition method. A high power conversion efficiency (η) of ∼1.6% and the maximum incident photon-to-photocurrent efficiency (IPCE = 56%) were attained using composite clusters of free base and zinc porphyrin–peptide hexadecamers [P(H2P)16 and P(ZnP)16] with fullerenes, respectively. Femtosecond transient absorption and fluorescence measurements of porphyrin–fullerene composite films confirm improved electron-transfer properties with increasing number of porphyrins in a polypeptide unit. The formation of molecular assemblies between porphyrins and fullerenes with a polypeptide structure controls the electron-transfer efficiency in the supramolecular complexes, meeting the criteria required for efficient light energy conversion.


Tetrahedron Letters | 2002

Novel porphyrinic peptides with assigned sequence of metallated chromophores, a further step towards redox switches

Nicolas Aubert; Vincent Troiani; Maurice Gross; Nathalie Solladié

This paper reports the synthesis and the characterization of peptides encompassing an assigned sequence of chromophores. The obtained pentaporphyrin is expected to be a good candidate for the elaboration of redox switches.


Journal of Porphyrins and Phthalocyanines | 2003

Structure-reactivity correlations in extended multi-porphyrinic architectures

Nathalie Solladié; Nicolas Aubert; Souhaila Bouatra; Cyril Bourgogne; Frédérique Brégier; Julie Brettar; Jean-Paul Gisselbrecht; Maurice Gross; Régis Rein; Chloé Sooambar; Vincent Troiani; Mathieu E. Walther

In addition to controlling the structure of multi-chromophoric arrays, monitoring the spatial orientation of the chromophores in artificial light harvesting devices is a challenge of growing interest. We report in this article our recent advances in this field. It is expected that a better understanding of the physicochemical properties of rigid cofacial porphyrinic tweezers and an identification of the factors governing them will be crucial for the design and the elaboration of new nano-molecules endowed with original properties. Extended multi-porphyrinic architectures, polypeptides bearing pendant porphyrins have been synthesized as linear devices, and a star-like pentaporphyrin as an arborescent array. The structure and the original conformation of the latter confer to this system an unusual duality in its physicochemical properties.


Journal of Physical Chemistry B | 2005

Enhancement of Light-Energy Conversion Efficiency by Multi-Porphyrin Arrays of Porphyrin−Peptide Oligomers with Fullerene Clusters

Taku Hasobe; Prashant V. Kamat; Vincent Troiani; Nathalie Solladié; Tae Kyu Ahn; Seong Keun Kim; Dongho Kim; Anusorn Kongkanand; Susumu Kuwabata; Shunichi Fukuzumi


Journal of Physical Chemistry C | 2007

Nondestructive Formation of Supramolecular Nanohybrids of Single-Walled Carbon Nanotubes with Flexible Porphyrinic Polypeptides

Kenji Saito; Vincent Troiani; Hongjin Qiu; Nathalie Solladié; Takao Sakata; Hirotaro Mori; and Mitsuo Ohama; Shunichi Fukuzumi


Physical Chemistry Chemical Physics | 2011

Multiple photosynthetic reaction centres using zinc porphyrinic oligopeptide–fulleropyrrolidine supramolecular complexes

Shunichi Fukuzumi; Kenji Saito; Kei Ohkubo; Vincent Troiani; Hongjin Qiu; Suresh Gadde; Francis D'Souza; Nathalie Solladié


Journal of Physical Chemistry B | 2005

Fast exciton migration in porphyrin-functionalized polypeptides.

Mamoru Fujitsuka; Michihiro Hara; Sachiko Tojo; Ayumi Okada; Vincent Troiani; Nathalie Solladié; Tetsuro Majima


Journal of Photochemistry and Photobiology A-chemistry | 2007

S2- and S1-states properties of zinc porphyrin polypeptides

Mamoru Fujitsuka; Dae Won Cho; Nathalie Solladié; Vincent Troiani; Hongjin Qiu; Tetsuro Majima


Chirality | 2003

Molecular engineering of extended chiral and enantiopure multiporphyrinic architectures: Towards the control of their physico‐chemical properties

Nathalie Solladié; Nicolas Aubert; Jean-Paul Gisselbrecht; Maurice Gross; Chloé Sooambar; Vincent Troiani


209th ECS Meeting | 2007

Non-Destructive Extraction of Semiconducting Single Walled Carbon Nanotubes by Wrapping with Flexible Porphyrin Polypeptides and the Supramolecular Photodynamics

Kenji Saito; Vincent Troiani; Hongjin Qiu; N. Solladie; Takao Sakata; Hirotaro Mori; Yasuyuki Araki; Osamu Ito; Shunichi Fukuzumi

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Nathalie Solladié

Centre national de la recherche scientifique

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Hongjin Qiu

Centre national de la recherche scientifique

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Nicolas Aubert

Centre national de la recherche scientifique

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Maurice Gross

Centre national de la recherche scientifique

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