Stefan Naumann
Dr. Stefan Naumann FB Umweltplanung/-technik - FR Informatik Umwelt-Campus Birkenfeld Campusallee Hoppstädten-Weiersbach. Studiengangsleiter. Dr. Stefan Naumann | Eschborn, Hessen, Deutschland | Executive Partner, Head of Capital Markets at msgGillardon AG | Kontakte | Startseite, Profil. People at msg; Stefan Naumann. TO OVERVIEW. Ich bin seit 1. Januar bei der msgGillardon als Partner tätig und verantworte hier den Geschäftsbereich.Stefan Naumann Citations en double Video
[Foreign Correspondents] Ep.168 - 30 years since the fall of the Berlin WallZusГtzlich zu dieser Auswahl an Tischspielen ist Stefan Naumann auch die Heimat der erstaunlichen Live-Dealer-Spiele von Evolution Neue Browsergames Beta. - Lehrveranstaltungen
Further information can be found in our data protection information. The benefits are especially notable if one achieves to selectively activate the monomer, while the polymer chain itself remains largely unaffected. This lactone can be bio-sourced and crucially, its thermodynamically favoured, almost strainless five-membered Ebay Kleinanzeigen Bewerten facilitates ready depolymerization by simple heating. This is counterbalanced by in turn activating the Montanablack.De. See for example: New Yorker Online De. Overall, as we found from experiments Premier Darts calculations, NHOs are superbases and can also add to moderately activated double bonds.


Multiple benefits have resulted from this approach, including among others:. See for example: S. Naumann , P. Scholten, J. Wilson, A.
Wang Macromolecules , 49 , ; P. Walther, A. Krauss, S. Two very different polymerization pathways, namely organocatalytic, anionic polymerization and zwitterionic polymerization can be operated by application of NHO catalysis.
The different mechanisms have fundamental repercussions for the resulting polyethers. This mechanistic dualism opened up novel material applications for polyethers.
Very differently, the resulting UHMW-polymers from the zwitterionic approach i. The overall aim of my research regarding polyether formation is my conviction that, by perspective, polyethers can be developed into valuable performance polymers; to this end, a combination of advanced catalysis and process technology is necessary, encompassing not only control over molar mass and molar mass distribution, but also tacticity and degradability of the polyethers.
Thomas, A. Markus, J. Bruckner, S. This lactone can be bio-sourced and crucially, its thermodynamically favoured, almost strainless five-membered structure facilitates ready depolymerization by simple heating.
This typically occurs without any side products as demonstrated by Chen and co-workers, thus constituting an ideal candidate for a circular economy.
Our research therefore followed a two-pronged approach : developing more practicable ways to generate the homopolymer poly GBL and secondly copolymerizing GBL with other lactones to create tailored polyesters.
In this case, the dual catalytic methodology proved especially successful, allowing for the selective realization of different poly GBL architectures and for controlling GBL incorporation in copolymers by choice of the co-catalyzing Lewis acid.
See for example: P. Walther, S. Walther, W. Frey, S. In this context, I am PI of a project investigating the porous supports, focusing on carbon materials.
To this end, we employ an organic self-assembly process, using amphiphilic block copolyethers as structure directing agents.
Crucially, we employ our ability for precise polyether preparation see to in turn realize highly ordered carbon structures.
By fine-tuning the structure-directing polymers with regard to molar mass and hydrophilic-to-lipophilic balance, we aim to control the diameter of the generated mesopores.
We further aim to control the surface chemistry of the mesoporous material. Balint, M. Papendick, M.
Clauss, C. Müller, F. Giesselmann, S. For full functionality of this site it is necessary to enable JavaScript. Here are the instructions how to enable JavaScript in your web browser.
Position within the page tree Move path to the left Move path to the right. Start Institute Team Naumann, Stefan. Vogler, S.
Naumann, RSC Adv. Altmann, M. Steinmann, G. Mourgas, I. Elser, M. Benedikter, S. Naumann, M. Buchmeiser, J. Winnacker, S. Schindler, S. Walther, C.
Naumann, Chem. Naumann, Macromol. Naumann, J. Clauss, S. König, E. Frick-Delaittre, C. Koopmans, A. Wolf, S. Dove, H. Sardon and S. Naumann, Polym.
Meisner, J. Karwounopoulos, P. Walther, J. Naumann, K. Mundsinger, L. Cavallo, L. Falivene, Polym.
Buchmeiser, invited paper, Eur. Naumann, D. Buchmeiser, Chem. Jovic, J. Unold, S. His patent litigation practice covers additional industries.
In the Paris office, Stefan and his team handle litigation, arbitration, advisory and transactional work with respect to patents, trademarks, copyrights, designs, neighboring rights, image rights, trade dress and data protection.
The team's media work includes French media regulations, motion picture production, distribution and merchandising, talent contract negotiation and collective bargaining, anti-piracy and enforcement for a number of studios.
In addition, Stefan is a regular contributor to trade magazines, and he frequently speaks at a number of conferences on French trademark law, exhaustion of rights in the European Union, employee inventions and remuneration, technology transfer contracts and punitive damages in patent litigation.
Stefan Naumann. Download V Card. General Folder. English French. Client Advisories. Legal comments: "Head of department Stefan Naumann has been commended for his excellent communication skills and ability to work easily in English" "The 'excellent' Stefan Naumann leads a strong IP practice…, offering excellent service in patent litigation as well as expertise in French and US copyright and trademark-related matters" "The responsive, sensitive and knowledgeable Stefan Naumann is a pleasure to work with" Chambers notes: "Lauded for his outstanding negotiation and litigation skills, Stefan Naumann… is the go-to lawyer for anti-piracy matters.







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