• English
    • Deutsch
  • English 
    • English
    • Deutsch
  • Login
View Item 
  •   Home
  • Universität Ulm
  • Publikationen
  • View Item
  •   Home
  • Universität Ulm
  • Publikationen
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Carbodiimide-driven dimerization and self-assembly of artificial, ribose-based amphiphiles

Thumbnail
von_Delius_2022.pdf (2.784Mb)
Sup_von_Delius_2022. ... (5.642Mb)

peer-reviewed

Erstveröffentlichung
2022-01-17
Authors
Sun, Jing
Vogel, Julian
Chen, Lisa
Schleper, Lennart
Bergner, Tim
et al.
Wissenschaftlicher Artikel


Published in
Chemistry - A European Journal ; 28 (2022), 13. - Art.-Nr. e202104116. - ISSN 0947-6539. - eISSN 1521-3765
Link to original publication
https://dx.doi.org/10.1002/chem.202104116
Faculties
Fakultät für Naturwissenschaften
Institutions
Institut für Organische Chemie I
Institut für Organische Chemie III (Makromolekulare Chemie und Organische Materialien)
ZE Elektronenmikroskopie
Document version
published version (publisher's PDF)
Abstract
The aqueous self-assembly of amphiphiles into aggregates such as micelles and vesicles has been widely investigated over the past decades with applications ranging from materials science to drug delivery. The combination of characteristic properties of nucleic acids and amphiphiles is of substantial interest to mimic biological self-organization and compartmentalization. Herein, we present ribose- and ribonucleotide-based amphiphiles and investigate their self-assembly as well as their fundamental reactivity. We found that various types of aggregates are formed, ranging in size from nanometers to micrometers and all amphiphiles exhibit aggregation-induced emission (AIE) in solution as well as in the solid state. We also observed that the addition of 1-ethyl-3-(3-dimethylaminopropyl)carbodiimide (EDC) leads to rapid and selective dimerization of the amphiphiles into pyrophosphates, which decreases the critical aggregation concentration (CAC) by a factor of 25 when compared to the monomers. Since the propensity for amphiphile dimerization is correlated with their tendency to self-assemble, our results may be relevant for the formation of rudimentary compartments under prebiotic conditions.
EU Project uulm
SUPRANET / Supramolecular Recognition in Dynamic Covalent Networks at Equilibrium and Beyond / EC / H2020 / 802428
Publication funding
Gefördert durch die Deutsche Forschungsgemeinschaft (DFG) - 491116205oa-dfg-491116205
Is supplemented by
https://chemistry-europe.onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Fchem.202104116&file=chem202104116-sup-0001-misc_information.pdf
Subject headings
[GND]: Hydrolyse | Ribonucleotide | Selbstorganisation | Nucleic acids | RNS | DNS | Nucleotide | Polymerisation | Molekül
[LCSH]: Amphiphiles | Dimerization | Hydrolysis | Pyrophosphates | Self-assembly (Chemistry) | Supramolecular chemistry | Nucleic acids | RNA | DNA | Nucleotides | Polymerization | Pyrimidines | Molecules
[Free subject headings]: NUCLEOSIDE-BASED LIPIDS | SUPRAMOLECULAR ASSEMBLIES
[DDC subject group]: DDC 540 / Chemistry & allied sciences
License
CC BY 4.0 International
https://creativecommons.org/licenses/by/4.0/

Metadata
Show full item record

DOI & citation

Please use this identifier to cite or link to this item: http://dx.doi.org/10.18725/OPARU-47054

Sun, Jing et al. (2023): Carbodiimide-driven dimerization and self-assembly of artificial, ribose-based amphiphiles. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-47054
Citation formatter >



Policy | kiz service OPARU | Contact Us
Impressum | Privacy statement
 

 

Advanced Search

Browse

All of OPARUCommunities & CollectionsPersonsInstitutionsPublication typesUlm SerialsDewey Decimal ClassesEU projects UlmDFG projects UlmOther projects Ulm

My Account

LoginRegister

Statistics

View Usage Statistics

Policy | kiz service OPARU | Contact Us
Impressum | Privacy statement