Radical polymerization

Results: 106



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11Microsoft Word - 400_min05.doc

Microsoft Word - 400_min05.doc

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Source URL: old.iupac.org

Language: English - Date: 2009-01-05 08:20:55
12No.159  Research Article Polymerizable ionic liquids: Development to photo functional poly(ionic liquid) materials Jun-ichi Kadokawa

No.159 Research Article Polymerizable ionic liquids: Development to photo functional poly(ionic liquid) materials Jun-ichi Kadokawa

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Source URL: www.tcichemicals.com

Language: English - Date: 2015-01-28 23:32:24
13AIBN Polymer Group Available Student Projects http://www.uq.edu.au/polymer-chemistry/available-student-projects The lead researchers in the Polymer Chemistry Group are Prof Andrew Whittaker, Assoc Prof Idriss Blakey, Dr

AIBN Polymer Group Available Student Projects http://www.uq.edu.au/polymer-chemistry/available-student-projects The lead researchers in the Polymer Chemistry Group are Prof Andrew Whittaker, Assoc Prof Idriss Blakey, Dr

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Source URL: www.aibn.uq.edu.au

Language: English - Date: 2014-08-03 19:41:30
14IUPAC MACROMOLECULAR DIVISION (IV)

IUPAC MACROMOLECULAR DIVISION (IV)

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Source URL: old.iupac.org

Language: English - Date: 2009-01-05 08:43:31
15Experiment 10: Polymerization of methyl methacrylate (MMA) in bulk to form PMMA. Aim: (a) To study the bulk polymerization of undiluted MMA to PMMA initiated by a single radical initiator at elevated temperature and to d

Experiment 10: Polymerization of methyl methacrylate (MMA) in bulk to form PMMA. Aim: (a) To study the bulk polymerization of undiluted MMA to PMMA initiated by a single radical initiator at elevated temperature and to d

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Source URL: www.chemistry2011.org

Language: English - Date: 2013-03-24 11:21:36
16From chip-in-a-lab to lab-on-a-chip: towards a single handheld electronic system for multiple application-specific lab-on-a-chip (ASLOC)

From chip-in-a-lab to lab-on-a-chip: towards a single handheld electronic system for multiple application-specific lab-on-a-chip (ASLOC)

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Source URL: gmwgroup.harvard.edu

Language: English - Date: 2015-03-05 16:37:48
17Direct Radical Polymerization of 4-Styryldiphenylphosphine: Preparation of Cross-Linked and Non-Cross-Linked Triphenylphosphine-Containing Polystyrene Polymers Matthew Kwok Wai Choi, Helen Song He, and

Direct Radical Polymerization of 4-Styryldiphenylphosphine: Preparation of Cross-Linked and Non-Cross-Linked Triphenylphosphine-Containing Polystyrene Polymers Matthew Kwok Wai Choi, Helen Song He, and

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Source URL: www.chemistry.hku.hk

Language: English - Date: 2006-02-15 03:37:28
18Supporting information for:  Direct Radical Polymerization of 4-Styryldiphenylphosphine: Preparation of Cross-Linked and Noncross-Linked Triphenylphosphine Containing Polystyrene Polymers Matthew Kwok Wai Choi, Helen Son

Supporting information for: Direct Radical Polymerization of 4-Styryldiphenylphosphine: Preparation of Cross-Linked and Noncross-Linked Triphenylphosphine Containing Polystyrene Polymers Matthew Kwok Wai Choi, Helen Son

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Source URL: www.chemistry.hku.hk

Language: English - Date: 2006-02-15 03:37:28
    19Subscriber access provided by HKU Libraries  Review Organic Polymer Supports for Synthesis and for Reagent and Catalyst Immobilization

    Subscriber access provided by HKU Libraries Review Organic Polymer Supports for Synthesis and for Reagent and Catalyst Immobilization

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    Source URL: www.chemistry.hku.hk

    Language: English - Date: 2009-10-28 03:19:45
    20Experiment 1: Polymerization of acrylamide in water  Aim:	 (a) To polymerize acrylamide (monomer) in water to polyacrylamide (polymer) by free radical polymerization using a

    Experiment 1: Polymerization of acrylamide in water Aim: (a) To polymerize acrylamide (monomer) in water to polyacrylamide (polymer) by free radical polymerization using a "redox" pair of initiators. (b) To follow the

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    Source URL: www.chemistry2011.org

    Language: English - Date: 2013-03-24 11:18:51