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Linda M Winslow, 61Mundelein, IL

Linda Winslow Phones & Addresses

Mundelein, IL   

417 Hampshire Ct, Grayslake, IL 60030    847-2230965   

965 Manchester Cir, Grayslake, IL 60030    847-2230965   

Chicago, IL   

Lane, IL   

Mentions for Linda M Winslow

Linda Winslow resumes & CV records

Resumes

Linda Winslow Photo 44

Project Manager

Location:
1137 Regent Dr, Mundelein, IL
Industry:
Hospital & Health Care
Work:
Aim Specialty Health
Project Manager
Northshore University Healthsystem 2011 - Feb 2012
Project Manager
Allscripts Jul 2008 - Aug 2011
Senior Project Manager
Advocate Health Care Feb 2005 - Jul 2008
Manager App Development and Support
Education:
Depaul University 1994
Bachelors, Bachelor of Arts
Depaul University 1992 - 1994
Bachelors, Bachelor of Science, Management
Skills:
Healthcare Information Technology
Linda Winslow Photo 45

Linda Winslow

Linda Winslow Photo 46

Linda Winslow

Linda Winslow Photo 47

Linda Winslow

Linda Winslow Photo 48

Linda Winslow

Publications & IP owners

Us Patents

Catalysts Based On 2-Aryl-8-Anilinoquinoline Ligands

US Patent:
7858718, Dec 28, 2010
Filed:
Jul 22, 2009
Appl. No.:
12/460621
Inventors:
Sandor Nagy - Naperville IL, US
Linda N. Winslow - Cincinnati OH, US
Shahram Mihan - Bad Soden, DE
Reynald Chevalier - Frankfurt, DE
Lenka Lukesova - Frankfurt, DE
Ilya E. Nifant'ev - Moscow, RU
Pavel V. Ivchenko - Moscow, RU
Michael W. Lynch - West Chester OH, US
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08F 4/76
C08F 4/64
C08F 4/52
C07F 7/00
US Classification:
526172, 526161, 526134, 526348, 5263482, 5263485, 5263486, 526351, 526352, 526901, 526941, 556 52, 556 51, 502103
Abstract:
Catalysts useful for polymerizing olefins are disclosed. The catalysts comprise an activator and a Group 4 metal complex that incorporates a dianionic, tridentate 2-aryl-8-anilinoquinoline ligand. In one aspect, supported catalysts are prepared by first combining a boron compound having Lewis acidity with excess alumoxane to produce an activator mixture, followed by combining the activator mixture with a support and the tridentate, dianionic Group 4 metal complex. The catalysts are easy to synthesize, support, and activate, and they enable facile production of high-molecular-weight polyolefins.

Method For Preparing Non-Metallocene Catalysts

US Patent:
8153544, Apr 10, 2012
Filed:
Jul 22, 2009
Appl. No.:
12/460640
Inventors:
Sandor Nagy - Naperville IL, US
Linda N. Winslow - Cincinnati OH, US
Shahram Mihan - Bad Soden, DE
Reynald Chevalier - Frankfurt, DE
Lenka Lukesova - Frankfurt, DE
Ilya E. Nifant'ev - Moscow, RU
Pavel V. Ivchenko - Moscow, RU
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C07F 7/00
C07F 7/28
B01J 31/22
US Classification:
502152, 502167, 502150, 556 56, 556 54, 556 13, 556 19
Abstract:
A method of preparing supported catalysts useful for olefin polymerization is described. The catalysts comprise a Group 4 metal complex that incorporates a tridentate dianionic ligand. An activator mixture is first made from a boron compound having Lewis acidity and an excess of an alumoxane. The activator mixture is then combined with a support and the Group 4 metal complex to give a supported catalyst. The method provides an active, supported catalyst capable of making high-molecular-weight polyolefins.

Catalysts Based On 2-(2-Aryloxy)Quinoline Or 2-(2-Aryloxy)Dihydroquinoline Ligands

US Patent:
8158733, Apr 17, 2012
Filed:
Jul 22, 2009
Appl. No.:
12/460628
Inventors:
Sandor Nagy - Naperville IL, US
Linda N. Winslow - Cincinnati OH, US
Shahram Mihan - Bad Soden, DE
Reynald Chevalier - Frankfurt, DE
Lenka Lukesova - Frankfurt, DE
Ilya E. Nifant'ev - Moscow, RU
Pavel V. Ivchenko - Moscow, RU
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08F 4/64
C08F 4/72
C08F 4/52
B01J 31/38
C07F 7/00
US Classification:
526172, 526161, 526134, 526348, 502103, 556 51
Abstract:
Catalysts useful for polymerizing olefins are disclosed. The catalysts comprise an activator and a Group 4 metal complex that incorporates a dianionic, tridentate 2-(2-aryloxy)quinoline or 2-(2-aryloxy)dihydroquinoline ligand. In one aspect, supported catalysts are prepared by first combining a boron compound having Lewis acidity with excess alumoxane to produce an activator mixture, followed by combining the activator mixture with a support and the tridentate, dianionic Group 4 metal complex. The catalysts are easy to synthesize, support, and activate, and they enable facile production of high-molecular-weight polyolefins.

Activation Of Monocyclopentadienyl Group 6 Complexes

US Patent:
2011021, Sep 1, 2011
Filed:
Mar 1, 2010
Appl. No.:
12/660555
Inventors:
Sandor Nagy - Naperville IL, US
Linda N. Winslow - Cincinnati OH, US
Shahram Mihan - Bad Soden, DE
Lenka Lukesova - Frankfurt, DE
International Classification:
C08F 4/42
B01J 31/22
US Classification:
526126, 502118
Abstract:
A method for preparing a supported catalyst suitable for use in slurry and gas-phase olefin polymerizations is disclosed. An alumoxane-treated silica is combined with a monocyclopentadienyl Group 6 metal complex that comprises a chelating Cp moiety to give the supported catalyst. The method is simple to practice and provides catalysts having high activity. Polyolefins made using the catalysts have high molecular weight that is readily controlled by adding hydrogen.

Catalysts Based On Quinoline Precursors

US Patent:
2012001, Jan 19, 2012
Filed:
Jul 14, 2010
Appl. No.:
12/804122
Inventors:
Sandor Nagy - Naperville IL, US
Linda N. Winslow - Cincinnati OH, US
Shahram Mihan - Bad Soden, DE
Lenka Lukesova - Frankfurt, DE
Ilya E. Nifant'ev - Moscow, RU
Pavel V. Ivchenko - Moscow, RU
Vladimir V. Bagrov - Moscow, RU
International Classification:
C08F 4/76
B01J 31/12
B01J 31/02
US Classification:
526170, 502167, 502155
Abstract:
Catalysts useful for polymerizing olefins are disclosed. The catalysts comprise a transition metal complex, an optional activator, and an optional support. The complex is the reaction product of a Group 3-6 transition metal source, an optional alkylating agent, and a ligand precursor comprising a 2-imino-8-anilinoquinoline or a 2-aminoalkyl-8-anilinoquinoline. The catalysts, which are easy to synthesize by in-situ metallation of the ligand precursor, offer polyolefin manufacturers good activity and the ability to make high-molecular-weight ethylene copolymers that have little or no long-chain branching.

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