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Extract from the Register of European Patents

EP About this file: EP2766712

EP2766712 - METHOD FOR DETECTING THE INTERACTION OF AT LEAST ONE ENTITY WITH A DIELECTRIC LAYER [Right-click to bookmark this link]
StatusNo opposition filed within time limit
Status updated on  30.07.2021
Database last updated on 02.11.2024
FormerThe patent has been granted
Status updated on  21.08.2020
FormerGrant of patent is intended
Status updated on  29.04.2020
FormerExamination is in progress
Status updated on  07.09.2018
Most recent event   Tooltip08.07.2022Lapse of the patent in a contracting state
New state(s): MK
published on 10.08.2022  [2022/32]
Applicant(s)For all designated states
Centre National de la Recherche Scientifique
3, rue Michel Ange
75794 Paris Cedex 16 / FR
For all designated states
INSERM - Institut National de la Santé et de la Recherche Médicale
101 rue de Tolbiac
75654 Paris Cedex 13 / FR
[2020/39]
Former [2015/45]For all designated states
Centre National de la Recherche Scientifique
3, rue Michel Ange
75794 Paris Cedex 16 / FR
For all designated states
INSERM - Institut National de la Santé et de la Recherche Médicale
101 rue de Tolbiac
75654 Paris Cedex 13 / FR
Former [2014/34]For all designated states
Université Claude Bernard Lyon I
43 boulevard du 11 Novembre 1918
69622 Villeurbanne Cedex / FR
For all designated states
Ecole Centrale De Lyon
36 Avenue Guy de Collongue B.P. 163
69134 Ecully Cedex / FR
For all designated states
Institut National Des Sciences Appliquées De Lyon
20 avenue Albert Einstein
69621 Villeurbanne Cedex / FR
For all designated states
Centre National de la Recherche Scientifique
3, rue Michel-Ange
75794 Paris Cedex 16 / FR
For all designated states
INSERM - Institut National de la Santé et de la Recherche Médicale
101 rue de Tolbiac
75654 Paris Cedex 13 / FR
Inventor(s)01 / NICHIPORUK, Tetyana
9 rue Pierre de Ronsard
F-69780 Mions / FR
02 / SERDIUK, Tetiana
Chez Madame NICHIPORUK
9 rue Pierre de Ronsard
F-69780 Mions / FR
03 / LYSENKO, Volodymyr
4 allée Julien Duvivier
F-69100 Villeurbanne / FR
04 / ZAKHARKO, Yuriy
3 rue Maurice Flandin
F-69003 Lyon / FR
05 / GELOEN, Alain
8 bis rue des Lilas
F-69008 Lyon / FR
06 / LEMITI, Mustapha
38 rue Sainte Geneviève
F-69006 Lyon / FR
 [2014/34]
Representative(s)IPAZ
Bâtiment Platon
Parc Les Algorithmes
91190 Saint-Aubin / FR
[N/P]
Former [2020/39]IPAZ
Parc Les Algorithmes, Bâtiment Platon
CS 70003 Saint-Aubin
91192 Gif-sur-Yvette Cedex / FR
Former [2014/34]Sarlin, Laure V.
Cabinet Beau de Loménie 51, avenue Jean-Jaurès BP 7073
69301 Lyon Cedex 07 / FR
Application number, filing date12780227.008.10.2012
[2020/39]
WO2012FR52274
Priority number, dateFR2011005917411.10.2011         Original published format: FR 1159174
[2014/34]
Filing languageFR
Procedural languageFR
PublicationType: A1 Application with search report
No.:WO2013054024
Date:18.04.2013
Language:FR
[2013/16]
Type: A1 Application with search report 
No.:EP2766712
Date:20.08.2014
Language:FR
The application published by WIPO in one of the EPO official languages on 18.04.2013 takes the place of the publication of the European patent application.
[2014/34]
Type: B1 Patent specification 
No.:EP2766712
Date:23.09.2020
Language:FR
[2020/39]
Search report(s)International search report - published on:EP18.04.2013
ClassificationIPC:G01N21/64
[2014/34]
CPC:
G01N21/6489 (EP,US); G01N33/5091 (US); G01N21/64 (EP,US)
Designated contracting statesAL,   AT,   BE,   BG,   CH,   CY,   CZ,   DE,   DK,   EE,   ES,   FI,   FR,   GB,   GR,   HR,   HU,   IE,   IS,   IT,   LI,   LT,   LU,   LV,   MC,   MK,   MT,   NL,   NO,   PL,   PT,   RO,   RS,   SE,   SI,   SK,   SM,   TR [2014/34]
Extension statesBANot yet paid
MENot yet paid
TitleGerman:VERFAHREN ZUR ERKENNUNG DER INTERAKTION VON MINDESTENS EINER EINHEIT MIT EINER DIELEKTRISCHEN SCHICHT[2014/34]
English:METHOD FOR DETECTING THE INTERACTION OF AT LEAST ONE ENTITY WITH A DIELECTRIC LAYER[2014/34]
French:PROCEDE DE DETECTION DE L'INTERACTION D'AU MOINS UNE ENTITE AVEC UNE COUCHE DIELECTRIQUE[2014/34]
Entry into regional phase27.03.2014National basic fee paid 
27.03.2014Designation fee(s) paid 
27.03.2014Examination fee paid 
Examination procedure27.03.2014Examination requested  [2014/34]
17.11.2014Amendment by applicant (claims and/or description)
10.09.2018Despatch of a communication from the examining division (Time limit: M04)
07.01.2019Reply to a communication from the examining division
30.04.2020Communication of intention to grant the patent
17.08.2020Fee for grant paid
17.08.2020Fee for publishing/printing paid
17.08.2020Receipt of the translation of the claim(s)
Divisional application(s)The date of the Examining Division's first communication in respect of the earliest application for which a communication has been issued is  10.09.2018
Opposition(s)24.06.2021No opposition filed within time limit [2021/35]
Fees paidRenewal fee
23.10.2014Renewal fee patent year 03
26.10.2015Renewal fee patent year 04
25.10.2016Renewal fee patent year 05
29.09.2017Renewal fee patent year 06
25.09.2018Renewal fee patent year 07
25.09.2019Renewal fee patent year 08
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See the Register of the Unified Patent Court for opt-out data
Responsibility for the accuracy, completeness or quality of the data displayed under the link provided lies entirely with the Unified Patent Court.
Lapses during opposition  TooltipHU08.10.2012
AL23.09.2020
AT23.09.2020
CY23.09.2020
CZ23.09.2020
DK23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
IT23.09.2020
LT23.09.2020
LV23.09.2020
MC23.09.2020
MK23.09.2020
MT23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SI23.09.2020
SK23.09.2020
SM23.09.2020
TR23.09.2020
IE08.10.2020
LU08.10.2020
BE31.10.2020
CH31.10.2020
LI31.10.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
[2022/32]
Former [2022/27]HU08.10.2012
AL23.09.2020
AT23.09.2020
CY23.09.2020
CZ23.09.2020
DK23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
IT23.09.2020
LT23.09.2020
LV23.09.2020
MC23.09.2020
MT23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SI23.09.2020
SK23.09.2020
SM23.09.2020
TR23.09.2020
IE08.10.2020
LU08.10.2020
BE31.10.2020
CH31.10.2020
LI31.10.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
Former [2022/26]AL23.09.2020
AT23.09.2020
CZ23.09.2020
DK23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
IT23.09.2020
LT23.09.2020
LV23.09.2020
MC23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SI23.09.2020
SK23.09.2020
SM23.09.2020
TR23.09.2020
IE08.10.2020
LU08.10.2020
BE31.10.2020
CH31.10.2020
LI31.10.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
Former [2021/48]AL23.09.2020
AT23.09.2020
CZ23.09.2020
DK23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
IT23.09.2020
LT23.09.2020
LV23.09.2020
MC23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SI23.09.2020
SK23.09.2020
SM23.09.2020
IE08.10.2020
LU08.10.2020
BE31.10.2020
CH31.10.2020
LI31.10.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
Former [2021/46]AL23.09.2020
AT23.09.2020
CZ23.09.2020
DK23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
MC23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SI23.09.2020
SK23.09.2020
SM23.09.2020
IE08.10.2020
LU08.10.2020
BE31.10.2020
CH31.10.2020
LI31.10.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
Former [2021/37]AL23.09.2020
AT23.09.2020
CZ23.09.2020
DK23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
MC23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SI23.09.2020
SK23.09.2020
SM23.09.2020
LU08.10.2020
BE31.10.2020
CH31.10.2020
LI31.10.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
Former [2021/36]AL23.09.2020
AT23.09.2020
CZ23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
MC23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SI23.09.2020
SK23.09.2020
SM23.09.2020
LU08.10.2020
BE31.10.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
Former [2021/31]AL23.09.2020
AT23.09.2020
CZ23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
MC23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SK23.09.2020
SM23.09.2020
LU08.10.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
Former [2021/28]AL23.09.2020
AT23.09.2020
CZ23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SK23.09.2020
SM23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
Former [2021/25]AL23.09.2020
AT23.09.2020
CZ23.09.2020
EE23.09.2020
ES23.09.2020
FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
NL23.09.2020
PL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SM23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
IS23.01.2021
PT25.01.2021
Former [2021/24]AT23.09.2020
CZ23.09.2020
EE23.09.2020
FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
NL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SM23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
PT25.01.2021
Former [2021/23]CZ23.09.2020
EE23.09.2020
FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
NL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
SM23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
PT25.01.2021
Former [2021/22]CZ23.09.2020
EE23.09.2020
FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
NL23.09.2020
RO23.09.2020
RS23.09.2020
SE23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
PT25.01.2021
Former [2021/21]FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
NL23.09.2020
RS23.09.2020
SE23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
PT25.01.2021
Former [2021/20]FI23.09.2020
HR23.09.2020
LT23.09.2020
LV23.09.2020
NL23.09.2020
RS23.09.2020
SE23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
Former [2021/18]FI23.09.2020
HR23.09.2020
LV23.09.2020
NL23.09.2020
RS23.09.2020
SE23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
Former [2021/10]FI23.09.2020
HR23.09.2020
LV23.09.2020
RS23.09.2020
SE23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
Former [2021/09]FI23.09.2020
SE23.09.2020
BG23.12.2020
NO23.12.2020
GR24.12.2020
Former [2021/08]FI23.09.2020
SE23.09.2020
BG23.12.2020
NO23.12.2020
Former [2021/07]FI23.09.2020
NO23.12.2020
Cited inInternational search[A]US2011188733  (BARDOS ROBERT ANDREW [AU], et al) [A] 1 * the whole document *;
 [Y]  - T. SERDIUK ET AL, "Storage of luminescent nanoparticles in porous silicon: Toward a solid state "golden fleece"", MATERIALS LETTERS, (20110801), vol. 65, no. 15-16, doi:10.1016/j.matlet.2011.05.033, ISSN 0167-577X, pages 2514 - 2517, XP055049014 [Y] 1-3 * the whole document *

DOI:   http://dx.doi.org/10.1016/j.matlet.2011.05.033
 [Y]  - PASCAL ANGER ET AL, "Enhancement and Quenching of Single-Molecule Fluorescence", PHYSICAL REVIEW LETTERS, (20060301), vol. 96, no. 11, doi:10.1103/PhysRevLett.96.113002, ISSN 0031-9007, XP055049030 [Y] 1-3 * the whole document *

DOI:   http://dx.doi.org/10.1103/PhysRevLett.96.113002
 [A]  - F Giorgis ET AL, "Luminescence processes in amorphous hydrogenated silicon-nitride nanometric multilayers", Physical Review, vol. 60, no. 16, (19991015), pages 11572 - 11576, URL: http://quantacomm.com/members/vinegoni/publications/prb_rc.pdf, (20120510), XP055026829 [A] 1 * the whole document *

DOI:   http://dx.doi.org/10.1103/PhysRevB.60.11572
 [A]  - PONS T ET AL, "On the quenching of semiconductor quantum dot photoluminescence by proximal gold nanoparticles", NANO LETTERS, ACS, US, (20071001), vol. 7, no. 10, doi:10.1021/NL071729+, ISSN 1530-6984, pages 3157 - 3164, XP007914595 [A] 1 * the whole document *

DOI:   http://dx.doi.org/10.1021/nl071729+
Examination   - VALRIE DUPLAN ET AL, "A photoluminescence-based quantum semiconductor biosensor for rapid in situ detection of Escherichia coli", SENSORS AND ACTUATORS B: CHEMICAL: INTERNATIONAL JOURNAL DEVOTED TO RESEARCH AND DEVELOPMENT OF PHYSICAL AND CHEMICAL TRANSDUCERS, ELSEVIER BV, NL, vol. 160, no. 1, doi:10.1016/J.SNB.2011.07.010, ISSN 0925-4005, (20110705), pages 46 - 51, (20110719), XP028110866

DOI:   http://dx.doi.org/10.1016/j.snb.2011.07.010
    - VALÉRIE DUPLAN ET AL, "A photoluminescence-based quantum semiconductor biosensor for rapid in situ detection of Escherichia coli (Supporting Information)", SENSORS AND ACTUATORS B: CHEMICAL: INTERNATIONAL JOURNAL DEVOTED TO RESEARCH AND DEVELOPMENT OF PHYSICAL AND CHEMICAL TRANSDUCERS, NL, (20111201), vol. 160, no. 1, doi:10.1016/j.snb.2011.07.010, ISSN 0925-4005, pages 46 - 51, XP055504018

DOI:   http://dx.doi.org/10.1016/j.snb.2011.07.010
by applicantUS2010035335
    - ROBERTSON J. ET AL., APPL. PHYS. LETT., (1984), vol. 44, pages 415 - 417
    - MO C. ET AL., J. APPL. PHYS., (1993), vol. 73, pages 5185 - 5188
    - J-F LELIEVRE, "Elaboration de SiNx:H par PECVD: optimisation des propriétés optiques, passivantes et structurales pour applications photovoltaïques", THèSE INSA DE LYON, (2007), page 187
    - J. DUPUIS, "Elaboration et charactérisation de couches SiOxNy:H et SiNx:H réalisées par méthode PECVD: application à la face arrière des cellules photovoltaïques en Silicium", THèSE INSA DE LYON, (2009), page 161
    - SOLAR ENERGY MATERIALS AND SOLAR CELLS, (201012), vol. 94, no. 12, pages 2314 - 2317
The EPO accepts no responsibility for the accuracy of data originating from other authorities; in particular, it does not guarantee that it is complete, up to date or fit for specific purposes.