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Extract from the Register of European Patents

EP About this file: EP2753649

EP2753649 - POLYMERIZABLE COMPOSITIONS CONTAINING (METH)ACRYLATE MONOMERS HAVING SULFIDE LINKAGES [Right-click to bookmark this link]
StatusNo opposition filed within time limit
Status updated on  13.01.2023
Database last updated on 06.07.2024
FormerThe patent has been granted
Status updated on  04.02.2022
FormerGrant of patent is intended
Status updated on  20.09.2021
FormerExamination is in progress
Status updated on  10.07.2021
FormerGrant of patent is intended
Status updated on  09.06.2021
FormerExamination is in progress
Status updated on  30.04.2021
FormerGrant of patent is intended
Status updated on  21.04.2021
FormerExamination is in progress
Status updated on  03.04.2017
Most recent event   Tooltip31.05.2024Lapse of the patent in a contracting state
New state(s): MK
published on 03.07.2024  [2024/27]
Applicant(s)For all designated states
PPG Industries Ohio, Inc.
3800 West 143rd Street
Cleveland, OH 44111 / US
[2014/29]
Inventor(s)01 / HEROLD, Robert D.
218 Leaside Drive
Monroeville, Pennsylvania 15146 / US
02 / BOJKOVA, Nina
100 Oxford Drive
805
Monroeville, Pennsylvania 15146 / US
03 / GRAHAM, Marvin J.
234 Shady Ridge Drive
Monroeville, Pennsylvania 15146 / US
04 / HICKENBOTH, Charles R.
512 Luke Court
Cranberry Township, Pennsylvania 16066 / US
05 / MCCOLLUM, Gregory J.
5130 Bronwyn Court
Gibsonia, Pennsylvania 15044 / US
06 / RETSCH, William H.
4369 Winchester Drive
Allison Park, Pennsylvania 15101 / US
07 / HONGYING, Zhou
3953 North Monet Court
Allison Park, Pennsylvania 15101 / US
 [2014/29]
Representative(s)f & e patent
Braunsberger Feld 29
51429 Bergisch Gladbach / DE
[2022/10]
Former [2014/29]f & e patent
Fleischer, Engels & Partner mbB, Patentanwälte
Braunsberger Feld 29
51429 Bergisch Gladbach / DE
Application number, filing date12762491.407.09.2012
[2022/10]
WO2012US54175
Priority number, dateUS201161532275P08.09.2011         Original published format: US 201161532275 P
US20121360510006.09.2012         Original published format: US201213605100
[2014/29]
Filing languageEN
Procedural languageEN
PublicationType: A1 Application with search report
No.:WO2013036774
Date:14.03.2013
Language:EN
[2013/11]
Type: A1 Application with search report 
No.:EP2753649
Date:16.07.2014
Language:EN
The application published by WIPO in one of the EPO official languages on 14.03.2013 takes the place of the publication of the European patent application.
[2014/29]
Type: B1 Patent specification 
No.:EP2753649
Date:09.03.2022
Language:EN
[2022/10]
Type: B8 Corrected title page of specification 
No.:EP2753649
Date:27.04.2022
[2022/17]
Search report(s)International search report - published on:EP14.03.2013
ClassificationIPC:C08F220/38, C08F222/10, G02B1/10
[2014/29]
CPC:
G02B1/04 (EP,US); C08F220/38 (KR); C08F220/382 (EP,US);
C07C323/12 (US); C08F128/04 (US); C08F222/10 (KR);
C08F222/1006 (KR); C08F222/102 (EP,US); C08F36/20 (US);
C08G75/00 (KR); C08L33/04 (KR); C08L33/14 (KR);
C09K3/00 (US); G02B1/10 (KR); C08F228/00 (EP) (-)
C-Set:
G02B1/04, C08L33/14 (EP,US);
C08F220/382, C08F212/08 (EP);
C08F220/382, C08F220/382 (EP);
C08F228/00, C08F220/382 (EP)
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 [2014/29]
Extension statesBANot yet paid
MENot yet paid
TitleGerman:POLYMERISIERBARE ZUSAMMENSETZUNGEN MIT (METH)ACRYLATMONOMEREN MIT SULFIDBINDUNGEN[2014/29]
English:POLYMERIZABLE COMPOSITIONS CONTAINING (METH)ACRYLATE MONOMERS HAVING SULFIDE LINKAGES[2014/29]
French:COMPOSITIONS POLYMÉRISABLES CONTENANT DES MONOMÈRES (MÉTH)ACRYLATE AYANT DES LIAISONS SULFURE[2014/29]
Entry into regional phase14.03.2014National basic fee paid 
14.03.2014Designation fee(s) paid 
14.03.2014Examination fee paid 
Examination procedure14.03.2014Examination requested  [2014/29]
28.06.2014Amendment by applicant (claims and/or description)
26.01.2017Despatch of a communication from the examining division (Time limit: M02)
03.04.2017Reply to a communication from the examining division
29.04.2019Despatch of a communication from the examining division (Time limit: M04)
28.08.2019Reply to a communication from the examining division
29.10.2020Despatch of a communication from the examining division (Time limit: M02)
06.01.2021Reply to a communication from the examining division
10.06.2021Communication of intention to grant the patent
08.07.2021Disapproval of the communication of intention to grant the patent by the applicant or resumption of examination proceedings by the EPO
21.09.2021Communication of intention to grant the patent
27.01.2022Fee for grant paid
27.01.2022Fee for publishing/printing paid
27.01.2022Receipt of the translation of the claim(s)
Divisional application(s)EP21152448.3  / EP3838935
EP21193086.2  / EP3957661
The date of the Examining Division's first communication in respect of the earliest application for which a communication has been issued is  26.01.2017
Opposition(s)12.12.2022No opposition filed within time limit [2023/07]
Fees paidRenewal fee
29.09.2014Renewal fee patent year 03
28.09.2015Renewal fee patent year 04
27.09.2016Renewal fee patent year 05
27.09.2017Renewal fee patent year 06
27.09.2018Renewal fee patent year 07
27.09.2019Renewal fee patent year 08
28.09.2020Renewal fee patent year 09
27.09.2021Renewal fee patent year 10
Opt-out from the exclusive  Tooltip
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Patent Court
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  TooltipHU07.09.2012
AL09.03.2022
AT09.03.2022
CY09.03.2022
CZ09.03.2022
DK09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
IT09.03.2022
LT09.03.2022
LV09.03.2022
MC09.03.2022
MK09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SI09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
LU07.09.2022
BE30.09.2022
CH30.09.2022
LI30.09.2022
[2024/27]
Former [2024/21]HU07.09.2012
AL09.03.2022
AT09.03.2022
CY09.03.2022
CZ09.03.2022
DK09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
IT09.03.2022
LT09.03.2022
LV09.03.2022
MC09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SI09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
LU07.09.2022
BE30.09.2022
CH30.09.2022
LI30.09.2022
Former [2024/18]HU07.09.2012
AL09.03.2022
AT09.03.2022
CZ09.03.2022
DK09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
IT09.03.2022
LT09.03.2022
LV09.03.2022
MC09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SI09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
LU07.09.2022
BE30.09.2022
CH30.09.2022
LI30.09.2022
Former [2023/42]AL09.03.2022
AT09.03.2022
CZ09.03.2022
DK09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
IT09.03.2022
LT09.03.2022
LV09.03.2022
MC09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SI09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
LU07.09.2022
BE30.09.2022
CH30.09.2022
LI30.09.2022
Former [2023/35]AL09.03.2022
AT09.03.2022
CZ09.03.2022
DK09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
IT09.03.2022
LT09.03.2022
LV09.03.2022
MC09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SI09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
LU07.09.2022
CH30.09.2022
LI30.09.2022
Former [2023/30]AL09.03.2022
AT09.03.2022
CZ09.03.2022
DK09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
MC09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SI09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
LU07.09.2022
Former [2023/22]AL09.03.2022
AT09.03.2022
CZ09.03.2022
DK09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
MC09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SI09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
Former [2023/10]AL09.03.2022
AT09.03.2022
CZ09.03.2022
DK09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SI09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
Former [2023/07]AL09.03.2022
AT09.03.2022
CZ09.03.2022
DK09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
Former [2023/01]AL09.03.2022
AT09.03.2022
CZ09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
Former [2022/51]AT09.03.2022
CZ09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
IS09.07.2022
PT11.07.2022
Former [2022/50]AT09.03.2022
CZ09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
NL09.03.2022
PL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
PT11.07.2022
Former [2022/49]AT09.03.2022
CZ09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
NL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SK09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
PT11.07.2022
Former [2022/48]AT09.03.2022
CZ09.03.2022
EE09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
NL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
PT11.07.2022
Former [2022/47]AT09.03.2022
ES09.03.2022
FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
NL09.03.2022
RO09.03.2022
RS09.03.2022
SE09.03.2022
SM09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
PT11.07.2022
Former [2022/44]FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
NL09.03.2022
RS09.03.2022
SE09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
Former [2022/39]FI09.03.2022
HR09.03.2022
LT09.03.2022
LV09.03.2022
RS09.03.2022
SE09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
Former [2022/36]HR09.03.2022
LT09.03.2022
LV09.03.2022
RS09.03.2022
SE09.03.2022
BG09.06.2022
NO09.06.2022
GR10.06.2022
Former [2022/35]HR09.03.2022
LT09.03.2022
RS09.03.2022
SE09.03.2022
BG09.06.2022
NO09.06.2022
Former [2022/33]LT09.03.2022
NO09.06.2022
Cited inInternational search[XY]EP0730168  (SEIKO EPSON CORP [JP], et al) [X] 1,2 * example 7 * [Y] 3,8,23;
 [XY]EP0810210  (MITSUI TOATSU CHEMICALS [JP]) [X] 1 * example 7 * [Y] 3;
 [Y]EP1544220  (MITSUI CHEMICALS INC [JP]) [Y] 8,23* examples 1-15 *
ExaminationEP1149830
    - Basab Chaudhuri, "A Liquid-Liquid Process for Production of 2,4-Diphenyl-4-methyl-1-pentene by Dimerization of [alpha]-Methylstyrene", ORGANIC PROCESS RESEARCH AND DEVELOPMENT, US, (19990501), vol. 3, no. 3, doi:10.1021/op980023m, ISSN 1083-6160, pages 220 - 223, XP055582103

DOI:   http://dx.doi.org/10.1021/op980023m
    - Basab Chaudhuri, "A Liquid-Liquid Process for Production of 2,4-Diphenyl-4-methyl-1-pentene by Dimerization of [alpha]-Methylstyrene", Organic Process Research & Development, US, (19990501), vol. 3, no. 3, doi:10.1021/op980023m, ISSN 1083-6160, pages 220 - 223, XP055582103

DOI:   http://dx.doi.org/10.1021/op980023m
by applicantUS3361706
 US3562172
 US3567605
 US3578602
 US4215010
 US4342668
 US4637698
 JPS62195383
 US4816584
 US4818096
 US4826977
 US4880667
 US4931219
 US4931220
 US5066818
 US5238931
 US5274132
 US5384077
 US5405958
 US5429774
 US5466398
 US5867316
 US5882774
 US6096375
 US6808657
 US2005012998
 US7553925
 US7888436
    - "Photochromism", GLENN H. BROWN,, Techniques in Chemistry, JOHN WILEY AND SONS, INC., (1971), vol. III
    - TATSUHITO MATSUDA; YASUAKI FUNAE; MASAHIRO YOSHIDA; TETSUYA YAMAMOTO, "Novel Bifunctional Thiolcarboxylic Acid Esters Useful as Crosslinking Agents for Optical Materials", SYNTHETIC COMMUNICATIONS, (2000), vol. 30, no. 16, pages 3041 - 3045
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.