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Dendrons and Dendritic Terpolymers: Synthesis, Characterization and Self-Assembly Comparison

To the best of our knowledge, this is the very first time that a thorough study of the synthetic procedures, molecular and thermal characterization, followed by structure/properties relationship for symmetric and non-symmetric second generation (2-G) dendritic terpolymers is reported. Actually, the...

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Autores principales: Rangou, Sofia, Moschovas, Dimitrios, Moutsios, Ioannis, Manesi, Gkreti-Maria, Tsitoni, Konstantina, Bovsunovskaya, Polina V., Ivanov, Dimitri A., Thomas, Edwin L., Avgeropoulos, Apostolos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7766238/
https://www.ncbi.nlm.nih.gov/pubmed/33352785
http://dx.doi.org/10.3390/molecules25246030
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author Rangou, Sofia
Moschovas, Dimitrios
Moutsios, Ioannis
Manesi, Gkreti-Maria
Tsitoni, Konstantina
Bovsunovskaya, Polina V.
Ivanov, Dimitri A.
Thomas, Edwin L.
Avgeropoulos, Apostolos
author_facet Rangou, Sofia
Moschovas, Dimitrios
Moutsios, Ioannis
Manesi, Gkreti-Maria
Tsitoni, Konstantina
Bovsunovskaya, Polina V.
Ivanov, Dimitri A.
Thomas, Edwin L.
Avgeropoulos, Apostolos
author_sort Rangou, Sofia
collection PubMed
description To the best of our knowledge, this is the very first time that a thorough study of the synthetic procedures, molecular and thermal characterization, followed by structure/properties relationship for symmetric and non-symmetric second generation (2-G) dendritic terpolymers is reported. Actually, the synthesis of the non-symmetric materials is reported for the first time in the literature. Anionic polymerization enables the synthesis of well-defined polymers that, despite the architecture complexity, absolute control over the average molecular weight, as well as block composition, is achieved. The dendritic type macromolecular architecture affects the microphase separation, because different morphologies are obtained, which do not exhibit long range order, and various defects or dislocations are evident attributed to the increased number of junction points of the final material despite the satisfactory thermal annealing at temperatures above the highest glass transition temperature of all blocks. For comparison reasons, the initial dendrons (miktoarm star terpolymer precursors) which are connected to each other in order to synthesize the final dendritic terpolymers are characterized in solution and in bulk and their self-assembly is also studied. A major conclusion is that specific structures are adopted which depend on the type of the core connection between the ligand and the active sites of the dendrons.
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spelling pubmed-77662382020-12-28 Dendrons and Dendritic Terpolymers: Synthesis, Characterization and Self-Assembly Comparison Rangou, Sofia Moschovas, Dimitrios Moutsios, Ioannis Manesi, Gkreti-Maria Tsitoni, Konstantina Bovsunovskaya, Polina V. Ivanov, Dimitri A. Thomas, Edwin L. Avgeropoulos, Apostolos Molecules Article To the best of our knowledge, this is the very first time that a thorough study of the synthetic procedures, molecular and thermal characterization, followed by structure/properties relationship for symmetric and non-symmetric second generation (2-G) dendritic terpolymers is reported. Actually, the synthesis of the non-symmetric materials is reported for the first time in the literature. Anionic polymerization enables the synthesis of well-defined polymers that, despite the architecture complexity, absolute control over the average molecular weight, as well as block composition, is achieved. The dendritic type macromolecular architecture affects the microphase separation, because different morphologies are obtained, which do not exhibit long range order, and various defects or dislocations are evident attributed to the increased number of junction points of the final material despite the satisfactory thermal annealing at temperatures above the highest glass transition temperature of all blocks. For comparison reasons, the initial dendrons (miktoarm star terpolymer precursors) which are connected to each other in order to synthesize the final dendritic terpolymers are characterized in solution and in bulk and their self-assembly is also studied. A major conclusion is that specific structures are adopted which depend on the type of the core connection between the ligand and the active sites of the dendrons. MDPI 2020-12-19 /pmc/articles/PMC7766238/ /pubmed/33352785 http://dx.doi.org/10.3390/molecules25246030 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rangou, Sofia
Moschovas, Dimitrios
Moutsios, Ioannis
Manesi, Gkreti-Maria
Tsitoni, Konstantina
Bovsunovskaya, Polina V.
Ivanov, Dimitri A.
Thomas, Edwin L.
Avgeropoulos, Apostolos
Dendrons and Dendritic Terpolymers: Synthesis, Characterization and Self-Assembly Comparison
title Dendrons and Dendritic Terpolymers: Synthesis, Characterization and Self-Assembly Comparison
title_full Dendrons and Dendritic Terpolymers: Synthesis, Characterization and Self-Assembly Comparison
title_fullStr Dendrons and Dendritic Terpolymers: Synthesis, Characterization and Self-Assembly Comparison
title_full_unstemmed Dendrons and Dendritic Terpolymers: Synthesis, Characterization and Self-Assembly Comparison
title_short Dendrons and Dendritic Terpolymers: Synthesis, Characterization and Self-Assembly Comparison
title_sort dendrons and dendritic terpolymers: synthesis, characterization and self-assembly comparison
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7766238/
https://www.ncbi.nlm.nih.gov/pubmed/33352785
http://dx.doi.org/10.3390/molecules25246030
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