2011-07-27

966

Hydrolases in Polymer Chemistry: Chemoenzymatic Approaches to Polymeric Materials, by A. Heise and A.R.A. Palmans * Hydrolases in Polymer Chemistry: 

Anja Palmans studied chemical engineering at Eindhoven University of Technology (TU/e) and received her master's degree in 1992. She continued with PhD research in the group of Prof. Bert Meijer where she obtained her doctorate in 1997 with her thesis … Anja Palmans studied chemical engineering at Eindhoven University of Technology (TU/e) and received her master’s degree in 1992. She did a PhD in the group of Prof. Bert Meijer where she obtained her doctorate in 1997 with the thesis ‘Supramolecular structures based on the intramolecular H-bonding in acylated 3,3’-diamino-2,2’-bipyridines’.

Anja palmans

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Consequences of  Enzymatic Polymerisation · Anja R A Palmans, Andreas Heise Inbunden. Springer-Verlag Berlin and Heidelberg GmbH & Co. K, Tyskland, 2010. Jämför priser Hydrolases in Polymer Chemistry: Chemoenzymatic Approaches to Polymeric Materials, by A. Heise and A.R.A. Palmans * Hydrolases in Polymer Chemistry:  Pol Besenius1, Isja de Feijter2, Nico A.J.M. Sommerdijk3, Paul H.H. Bomans3, Anja R. A. Palmans2. 1Organic Chemistry Institute and  Palman som förnamn hittades 6 gånger i 1 olika länder.

After a Postdoc in the group of Prof. P. Smith at the ETH Zürich Pris: 3249 kr. Inbunden, 2010.

Anja R. A. Palmans is the author of Enzymatic Polymerisation (0.0 avg rating, 0 ratings, 0 reviews, published 2010)

Highly Influential Citations 0. Follow Author Claim Author Page. Author pages are created from data Discover our extensive list of research partners, collaborators and the professors we liaise with from Universities and Institutions all around the world. 2010-10-31 · Correspondence to Anja R. A. Palmans or E. W. Meijer.

Anja palmans

Anja Palmans has recently been awarded an NWO ECHO Project Grant of the Netherlands Organisation for Scientific Research - Chemical Sciences (NWO-CW). With this project, Anja Palmans aims at the development of catalytically active synthetic polymers in water by compartmentalization through folding.

Anja palmans

Anja Palmans. Supramolecular assembly and crystal engineering are fruitful concepts to use in the design and development of structures with a desired shape. Recently Yusuke Ogura, Müge Artar, Anja R. A. Palmans, Mitsuo Sawamoto, E. W. Meijer, and Takaya Terashima. Self-Assembly of Hydrogen-Bonding Gradient Copolymers: Sequence Control via Tandem Living Radical Polymerization with Transesterification. Macromolecules 2017, 50 (8) , 3215-3223. Supramolecular hydrogels formed by decorating benzene-1,3,5-tricarboxamide (BTA) units with amphiphilic ethylene glycol-based side chains are presented; careful selection of the substituents of the BTAs allows for the tuning of the self-assembly behaviour and hence the mechanical properties of the resultant DOI: 10.1002/chem.201405410 Full Paper & Organocatalysis Triggering Activity of Catalytic Rod-Like Supramolecular Polymers Elisa Huerta , Bas van Genabeek , Brigitte A. G. Lamers, Marcel M. E. Koenigs, E. W. Meijer,* and Anja R. A. Palmans*[a] Abstract: Supramolecular polymers based on benzene-1,3,5- strate concentrations as low as 0.1 mol % and 50 mm, re- tricarboxamides (BTAs) functionalized In addition, I performed an internship in the group of Thomas Hermans at the Institut de Science et d’Ingénierie Supramoléculaires, where I studied the self-assembly of perylene bisimide derivatives in aqueous solution.

Dimensioner 229 x 155 x 8 mm Vikt 227 g Antal komponenter 1 Komponenter 1 Paperback / softback ISBN 9783642265556 LIBRIS titelinformation: Enzymatic Polymerisation [Elektronisk resurs] / edited by Anja R. A. Palmans, Andreas Heise. Prof. Anja Palmans explains how she and her team were able to safely teach a practical course to students in covid-times.
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Anja palmans

Self-Assembly of Hydrogen-Bonding Gradient Copolymers: Sequence Control via Tandem Living Radical Polymerization with Transesterification. Macromolecules 2017, 50 (8) , 3215-3223. Supramolecular hydrogels formed by decorating benzene-1,3,5-tricarboxamide (BTA) units with amphiphilic ethylene glycol-based side chains are presented; careful selection of the substituents of the BTAs allows for the tuning of the self-assembly behaviour and hence the mechanical properties of the resultant DOI: 10.1002/chem.201405410 Full Paper & Organocatalysis Triggering Activity of Catalytic Rod-Like Supramolecular Polymers Elisa Huerta , Bas van Genabeek , Brigitte A. G. Lamers, Marcel M. E. Koenigs, E. W. Meijer,* and Anja R. A. Palmans*[a] Abstract: Supramolecular polymers based on benzene-1,3,5- strate concentrations as low as 0.1 mol % and 50 mm, re- tricarboxamides (BTAs) functionalized In addition, I performed an internship in the group of Thomas Hermans at the Institut de Science et d’Ingénierie Supramoléculaires, where I studied the self-assembly of perylene bisimide derivatives in aqueous solution. In April 2017, I started as a PhD student in the group of Bert Meijer and Anja Palmans. The quest to understand the origin of chirality in biological systems has evoked an intense search for nonlinear effects in catalysis and pathways to amplify slight enantiomeric excesses in racemates to give optically pure molecules.

Anja Palmans explains how she and her team were able to safely teach a practical course to students in covid-times. Picture: Bart van Overbeeke. 2020.
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Anja palmans




I: Enzyme Mechanism, Selectivity and Control in the Synthesis of Well-Defined Polymers, by M.A.J. Veld and A.R.A. Palmans Redaktör Anja R. A. Palmans.

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