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Biomimetic Synthesis of Sub-20 nm Covalent Organic Frameworks in Water

Authors :
European Research Council
European Commission
Ministerio de Economía y Competitividad (España)
Pons Pons, Ramón [0000-0003-4273-9084]
Franco, Carlos
Rodríguez-San-Miguel, David
Alessandro Sorrenti
Sorrenti, Alessandro
Sevim, Semih
Pons Pons, Ramón
Platero-Prats, Ana E.
Pavlovic, Marko
Szilágyi, Istvan
González Calbet, José M.
Ruiz Gonzalez, M. Luisa
Bochicchio, Davide
Pesce, Luca
Pavan, Giovanni M.
Imaz, Inhar
Cano-Sarabia, Mary
Maspoch, Daniel
Pané, Salvador
de Mello, Andrew J.
Zamora, Felix
Puigmartí-Luis, Josep
European Research Council
European Commission
Ministerio de Economía y Competitividad (España)
Pons Pons, Ramón [0000-0003-4273-9084]
Franco, Carlos
Rodríguez-San-Miguel, David
Alessandro Sorrenti
Sorrenti, Alessandro
Sevim, Semih
Pons Pons, Ramón
Platero-Prats, Ana E.
Pavlovic, Marko
Szilágyi, Istvan
González Calbet, José M.
Ruiz Gonzalez, M. Luisa
Bochicchio, Davide
Pesce, Luca
Pavan, Giovanni M.
Imaz, Inhar
Cano-Sarabia, Mary
Maspoch, Daniel
Pané, Salvador
de Mello, Andrew J.
Zamora, Felix
Puigmartí-Luis, Josep
Publication Year :
2020

Abstract

Covalent organic frameworks (COFs) are commonly synthesized under harsh conditions yielding unprocessable powders. Control in their crystallization process and growth has been limited to studies conducted in hazardous organic solvents. Herein, we report a one-pot synthetic method that yields stable aqueous colloidal solutions of sub-20 nm crystalline imine-based COF particles at room temperature and ambient pressure. Additionally, through the combination of experimental and computational studies, we investigated the mechanisms and forces underlying the formation of such imine-based COF colloids in water. Further, we show that our method can be used to process the colloidal solution into 2D and 3D COF shapes as well as to generate a COF ink that can be directly printed onto surfaces. These findings should open new vistas in COF chemistry, enabling new application areas.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1286550680
Document Type :
Electronic Resource