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Équipe MATISEN: Matériaux pour les technologies de l’information, les capteurs et la conversion d’énergie.

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Applied Physics Letters </I></FONT></FONT><FONT FACE="Arial, serif"><FONT SIZE=2 STYLE="font-size: 9pt"><SPAN STYLE="font-style: normal">,
Applied Physics Letters </I></FONT></FONT><FONT FACE="Arial, serif"><FONT SIZE=2 STYLE="font-size: 9pt"><SPAN STYLE="font-style: normal">,
Vol.102,013116(2013)</SPAN></FONT></FONT></P>
Vol.102,013116(2013)</SPAN></FONT></FONT></P>
<br />
<P STYLE="margin-bottom: 0in"><FONT FACE="Arial, serif"><FONT SIZE=1 STYLE="font-size: 8pt"><B>13.</B></FONT></FONT><FONT FACE="Arial, serif"><FONT SIZE=1 STYLE="font-size: 8pt"><SPAN STYLE="font-weight: normal"> </SPAN></FONT></FONT><FONT FACE="Arial, serif"><FONT SIZE=2 STYLE="font-size: 9pt">Y. Jouane et al.
<br /> '''Impact of sputtered ZnO interfacial layer on the S-curve in conjugated polymer/fullerene based-inverted organic solar cells''', </FONT></FONT><FONT FACE="Arial, serif"><FONT SIZE=2 STYLE="font-size: 9pt"><I>
Thin Solid Films</I></FONT></FONT><FONT FACE="Arial, serif"><FONT SIZE=2 STYLE="font-size: 9pt"><SPAN STYLE="font-style: normal">,
576 (2015) 23–30 </SPAN></FONT></FONT></P>
<br />
<br />

Version du 22 octobre 2015 à 13:29

1. F. Morel J.-P. Le Normand C.-V. Zint W. Uhring Y. Hu.
A Spatiotemporal CMOS Imager for Nanosecond Low Power Pulse Detections,
3rd IEEE International Conference on Sensors (Sensors 2004),, Vienna (Austria), October 24-27, 2004, Proc. pp. 911-914.


2. Madec M., Fasquel J.B., Uhring W., Joffre P., Hervé Y..
Optical implementation of the filtered backprojection algorithm,
Optical Engineering, Vol. 46(10), 108202 (October 2007)


3. Morel F., Zint C.V., Uhring W., Jean-Le Normand J.P..
Performances of a Solid Streak Camera in standard CMOS ,
SPIE Optics+Photonics 2012, Proc. of SPIE, Vol. 7003 70030G-1, 2008.


4. Madec M., Fasquel J.B., Uhring W., Joffre P., Hervé Y..
Technology with nanosecond time resolution,
Optical Engineering,, Vol 47(5), 058201 (May 2008).


5. Biniek L., Chochos C.L., Leclerc L., Hadziioannou G., Kallitsis J.K.
A [3,2-b]thienothiophene-alt-benzothiadiazole copolymer for photovoltaic applications: design, synthesis, material characterization and device performances,
J. Mater. Chem., Vol 19, 2009, pp. 4946-4951..


6. Bechara R., Leveque P. and Heiser T., M. Mamor, N. Unnikrishnan.
Properties of silicon nanoparticles embedded in SiNx deposited by microwave-PECVD,
Nanotechnology, Vol. 20 (2009) 415608 (5pp).


7. Delachat F., Carrada M., Ferblantier G.,Grob J.J., Slaoui A. and Rinnert H.
The structural and optical properties of SiO2/Si rich SiNx multilayers containing Si-ncs,
Nanotechnology, Vol. 20 (2009) 275608 (5pp).


8. Le Normand J.P., Zint C.V., and Uhring W.
High Repetition Rate Integrated Streak Camera in Standard CMOS Technology,
Photonics Europe 2004, 4th International Conference on Sensor Technologies and Applications (SENSORCOMM 2011), Saint-Laurent-du-Var (France), August 21-27, 2011, Proc. pp. 322-327


9. Gurimskaya Y.,Mathiot D.,Sellai A.,Kruszewski P., Dobaczewski L., Nylandsted Larsen A.,Mesli A..
Spectroscopic studies of iron and chromium in germanium,
J. Appl. Phys., Vol.110, 113707 (2011)


10. Mathiot D., Khelifi R.,Muller D., Duguay S.
Co-implantation, a simple way to grow doped Si nanocrystals embedded in SiO2,
Photonics Europe 2004, E-MRS Proc_Spring_2012


11. JouaneY., Colis S., Schmerber G. , Dinia A., Lévêque P., T. Heiser, Chapuis Y.-A.
Influence of flexible substrates on inverted organic solar cells using sputtered ZnO as cathode interfacial layer,
Organic Electronics, pages 1861--1868, Volume 14, 2013


12. Khelifi R., Mathiot D., Gupta R., Muller D., Roussel M., Dugay S.
Efficient n-type doping of Si nanocrystals embedded in SiO2 by ion beam synthesis,
Applied Physics Letters , Vol.102,013116(2013)


13. Y. Jouane et al.
Impact of sputtered ZnO interfacial layer on the S-curve in conjugated polymer/fullerene based-inverted organic solar cells,
Thin Solid Films, 576 (2015) 23–30