TY - JOUR A1 - Lutz, J.-F. A1 - Kubowicz, St. A1 - Baussard, J.-F. A1 - Thünemann, Andreas A1 - v. Berlepsch, H. A1 - Laschewsky, A. T1 - Multicompartment Micelles Obtained via the Self-Assembly of a Well-Defined Triblock Macrosurfactant Prepared by RAFT Polymerization KW - Micelles KW - Living polymerization KW - RAFT KW - Block copolymers PY - 2005 SN - 0032-3934 VL - 46 IS - 2 SP - 297 EP - 298 PB - American Chemical Society CY - Newark, NJ AN - OPUS4-10534 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Kubowicz, St. A1 - Baussard, J.-F. A1 - Lutz, J.-F. A1 - Thünemann, Andreas A1 - v. Berlepsch, H. A1 - Laschewsky, A. T1 - Multicompartment Micelles Formed by Self-Assembly of Linear ABC Triblock Copolymers in Aqueous Medium KW - Small-angle x-ray scattering KW - Micelles PY - 2005 DO - https://doi.org/10.1002/anie.200500584 SN - 1433-7851 SN - 1521-3773 SN - 0570-0833 VL - 44 SP - 5262 EP - 5265 PB - Wiley-VCH CY - Weinheim AN - OPUS4-10537 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schmidt, B.V.K.J. A1 - Fechler, N. A1 - Falkenhagen, Jana A1 - Lutz, J.-F. T1 - Controlled folding of synthetic polymer chains through the formation of positionable covalent bridges N2 - Covalent bridges play a crucial role in the folding process of sequence-defined biopolymers. This feature, however, has not been recreated in synthetic polymers because, apart from some simple regular arrangements (such as block co-polymers), these macromolecules generally do not exhibit a controlled primary structure—that is, it is difficult to predetermine precisely the sequence of their monomers. Herein, we introduce a versatile strategy for preparing foldable linear polymer chains. Well-defined polymers were synthesized by the atom transfer radical polymerization of styrene. The controlled addition of discrete amounts of protected maleimide at precise times during the synthesis enabled the formation of polystyrene chains that contained positionable reactive alkyne functions. Intramolecular reactions between these functions subsequently led to the formation of different types of covalently folded polymer chains. For example, tadpole (P-shaped), pseudocyclic (Q-shaped), bicyclic (8-shaped) and knotted (α-shaped) macromolecular origamis were prepared in a relatively straightforward manner. KW - Copolymerization KW - Chain folding KW - SEC KW - NMR KW - FT-IR KW - LAC KW - MALDI PY - 2011 DO - https://doi.org/10.1038/NCHEM.964 SN - 1755-4330 SN - 1755-4349 VL - 3 SP - 234 EP - 238 PB - Nature Publishing Group CY - London, UK AN - OPUS4-23888 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Lutz, J.-F. A1 - Thünemann, Andreas A1 - Nehring, R. T1 - Preparation by Controlled Radical Polymerization and Self-Assembly via Base-Recognition of Synthetic Polymers Bearing Complementary Nucleobases N2 - The radical polymerization of three monomers bearing nucleobases 1-(4-vinylbenzyl)thymine (VBT), 1-(4-vinylbenzyl)uracil (VBU) and 9-(4-vinylbenzyl)adenine (VBA) was investigated. The corresponding homopolymers could be prepared in high yields via conventional radical polymerization. However, the resulting polymers were found to be only soluble in a few polar solvents. On the other hand, copolymers of dodecyl methacrylate (DMA) with either VBT or VBA could be prepared via both free radical polymerization and atom transfer radical polymerization and could be dissolved in a large variety of organic solvents. Moreover, the formed complementary copolymers P(VBT-co-DMA) and P(VBA-co-DMA) were found to self-assemble in dilute solutions in dioxane or chloroform via base recognition, as evidenced by a significant hypochromicity effect in UV spectroscopy. Nevertheless, at higher concentrations in chloroform, both dynamic light scattering and optical microscopy indicate that P(VBT-co-DMA), P(VBA-co-DMA), or P(VBT-co-DMA)/P(VBA-co-DMA) mixtures spontaneously self-assemble into micron size spherical aggregates. 1H NMR and FTIR studies confirmed that the self-assembly process is driven in all cases via H-bond formation. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 43: 4805-4818, 2005 KW - ATRP KW - Living polymerization KW - Nucleic acids KW - Polymersomes KW - Self-assembly PY - 2005 DO - https://doi.org/10.1002/pola.20976 SN - 0360-6376 SN - 0887-624X VL - 43 IS - 20 SP - 4805 EP - 4818 PB - Wiley CY - Hoboken, NJ AN - OPUS4-10842 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Lutz, J.-F. A1 - Thünemann, Andreas A1 - Rurack, Knut T1 - DNA-like "Melting" of Adenine- and Thymine-Functionalized Synthetic Copolymers KW - Polymers KW - Micelles KW - Amyloid beta-peptide KW - Proteins KW - Secondary structure PY - 2005 SN - 0024-9297 SN - 1520-5835 VL - 38 IS - 20 SP - 8124 EP - 8126 PB - American Chemical Society CY - Washington, DC AN - OPUS4-11068 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Lutz, J.-F. A1 - Nehring, R. A1 - Thünemann, Andreas T1 - Solution Self-Assembly of Synthetic Copolymers bearing Complementary Nucleic Acid Funtionalities KW - DNA KW - Living polymerization KW - ATRP KW - Copolymers PY - 2005 SN - 0032-3934 VL - 46 IS - 2 SP - 397 EP - 398 PB - American Chemical Society CY - Newark, NJ AN - OPUS4-10535 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Lutz, J.-F. A1 - Kubowicz, S. A1 - Laschewsky, A. A1 - Nehring, R. A1 - Pfeifer, Sebastian A1 - Schütt, Dagmar A1 - Thünemann, Andreas T1 - Solution self-assembly of tailor-made macromolecular building-blocks designed by controlled radical polymerization techniques T2 - Makromolekulares Kolloquium Freiburg CY - Freiburg, Germany DA - 2006-02-23 PY - 2006 AN - OPUS4-12389 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Lutz, J.-F. A1 - Pfeifer, S. A1 - Chanana, M. A1 - Thünemann, Andreas A1 - Bienert, Ralf T1 - H-Bonding-Directed Self-Assembly of Synthetic Copolymers Containing Nucleobases: Organization and Colloidal Fusion in a Noncompetitive Solvent N2 - The self-organization of random copolymers composed of a nucleobase monomer (either 1-(4-vinylbenzyl)thymine or 9-(4-vinylbenzyl)adenine) and dodecyl methacrylate (DMA) was studied in dilute chloroform solutions. The balance between the molar fractions of the nucleobase monomer (leading to intermolecular H-bonding) and DMA (soluble moiety in chloroform) in the polymer chains was found to be the parameter that principally influences the self-organization. DMA-rich copolymers are molecularly soluble in chloroform, whereas nucleobase-rich copolymers are insoluble in this solvent. Copolymers possessing an equimolar comonomer composition self-assemble into micrometer-sized particles physically cross-linked by intermolecular H-bonds (either thymine-thymine or adenine-adenine interactions, depending on the studied copolymer). Nevertheless, when mixed together, thymine- and adenine-based colloids fuse into thermodynamically stable microspheres cross linked by adenine-thymine interactions. KW - Synthetic polymers KW - Self-organization KW - H-bonding KW - Nucleobases KW - Confocal fluorescence microscopy PY - 2006 DO - https://doi.org/10.1021/la061382a SN - 0743-7463 SN - 1520-5827 VL - 22 IS - 17 SP - 7411 EP - 7415 PB - American Chemical Society CY - Washington, DC AN - OPUS4-12637 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Roszak, I. A1 - Oswald, L. A1 - Ouahabi, A. A. A1 - Bertin, Annabelle A1 - Laurent, E. A1 - Felix, O. A1 - Carvin-Sergent, I. A1 - Charles, L. A1 - Lutz, J.-F. T1 - Synthesis and sequencing of informational poly(amino phosphodiester)s N2 - Sequence-defined poly(amino phosphodiester)s containing main-chain tertiary amines were synthesized by automated solid-phase phosphoramidite chemistry. These polymers were prepared using four monomers with different substituents. The formed polymers were characterized by HPLC and mass spectrometry. These methods evidenced preparation of molecularly-defined polymers. Furthermore, the presence of tertiary amines in the polymer backbones facilitates sequencing by tandem mass spectrometry. KW - Poly(amino phosphodiester) KW - Synthesis KW - HPLC KW - Mass spectrometry PY - 2021 DO - https://doi.org/10.1039/d1py01052b SN - 1759-9954 VL - 12 IS - 37 SP - 5279 EP - 5282 PB - Royal Society of Chemistry AN - OPUS4-53732 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -