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Featured researches published by Mahfoudh Raïssi.


Scientific Reports | 2016

Infra-red photoresponse of mesoscopic NiO-based solar cells sensitized with PbS quantum dot

Mahfoudh Raïssi; Yann Pellegrin; Stéphane Jobic; Mohammed Boujtita; Fabrice Odobel

Sensitized NiO based photocathode is a new field of investigation with increasing scientific interest in relation with the development of tandem dye-sensitized solar cells (photovoltaic) and dye-sensitized photoelectrosynthetic cells (solar fuel). We demonstrate herein that PbS quantum dots (QDs) represent promising inorganic sensitizers for NiO-based quantum dot-sensitized solar cells (QDSSCs). The solar cell sensitized with PbS quantum dot exhibits significantly higher photoconversion efficiency than solar cells sensitized with a classical and efficient molecular sensitizer (P1 dye = 4-(Bis-{4-[5-(2,2-dicyano-vinyl)-thiophene-2-yl]-phenyl}-amino)-benzoic acid). Furthermore, the system features an IPCE (Incident Photon-to-Current Efficiency) spectrum that spreads into the infra-red region, reaching operating wavelengths of 950 nm. The QDSSC photoelectrochemical device works with the complexes tris(4,4′-ditert-butyl-2,2′-bipyridine)cobalt(III/II) redox mediators, underscoring the formation of a long-lived charge-separated state. The electrochemical impedance spectrocopy measurements are consistent with a high packing of the QDs upon the NiO surface, the high density of which limits the access of the electrolyte and results in favorable light absorption cross-sections and a significant hole lifetime. These notable results highlight the potential of NiO-based photocathodes sensitized with quantum dots for accessing and exploiting the low-energy part of the solar spectrum in photovoltaic and photocatalysis applications.


Chemsuschem | 2017

A Blue Diketopyrrolopyrrole Sensitizer with High Efficiency in Nickel-Oxide-based Dye-Sensitized Solar Cells

Yoann Farré; Mahfoudh Raïssi; Arnaud Fihey; Yann Pellegrin; Errol Blart; Denis Jacquemin; Fabrice Odobel


Journal of Physical Chemistry C | 2017

Toward Efficient Solid-State p-Type Dye-Sensitized Solar Cells: The Dye Matters

Trang Thi Thu Pham; Sudip. K. Saha; David Provost; Yoann Farré; Mahfoudh Raïssi; Yann Pellegrin; Errol Blart; Sylvain Vedraine; Bernard Ratier; Dmitry Aldakov; Fabrice Odobel; Johann Bouclé


Solar Energy Materials and Solar Cells | 2017

Solution processed cathode and interconnecting layer of silver nanowires in an efficient inverted tandem organic solar cells

Mahfoudh Raïssi; Sylvain Vedraine; Richard Garuz; Thierry Trigaud; Bernard Ratier


Dyes and Pigments | 2018

Synthesis and properties of new benzothiadiazole-based push-pull dyes for p-type dye sensitized solar cells

Yoann Farré; Mahfoudh Raïssi; Arnaud Fihey; Yann Pellegrin; Errol Blart; Denis Jacquemin; Fabrice Odobel


Organic Electronics | 2016

Enhanced photocurrent and stability of organic solar cells using solution-based TS-CuPc interfacial layer

Mahfoudh Raïssi; Stéphanie Leroy-Lhez; Bernard Ratier


229th ECS Meeting (May 29 - June 2, 2016) | 2016

(Invited) Infra-Red Photoresponse of Mesoscopic NiO-Based Solar Cells Sensitized with PbS Quantum Dot

Fabrice Odobel; Mahfoudh Raïssi; Yann Pellegrin; Mohammed Boujtita


1st RSET International Symposium | 2016

Organic and perovskite solar cells for autonomous sensor network

Bernard Ratier; Alexandre Gheno; Malika Chalh; Claudio Cristoferi; Mahfoudh Raïssi; Johann Bouclé; Bruno Lucas; Sylvain Vedraine


SPIC 2015 : Science et Technologie des Systèmes pi-Conjugués | 2015

Elaboration et caractérisation d‘électrodes transparentes à base de nanofils d’argent pour une application solaire

Malika Chalh; Richard Garuz; Mahfoudh Raïssi; Sylvain Vedraine; Bruno Lucas; Bernard Ratier


Hybrid and Organic Photovoltaics Conference nanoGe HOPV 2015 | 2015

Optical Modeling and Realization of Transparent Multilayer Electrode and their Application for Solal Cells

Malika Chalh; Richard Garuz; Mahfoudh Raïssi; Sylvain Vedraine; Bruno Lucas; Bernard Ratier

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Bernard Ratier

Centre national de la recherche scientifique

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Bernard Ratier

Centre national de la recherche scientifique

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Fabrice Odobel

Université Nantes Angers Le Mans

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