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Título

Tailored Design of a Water-Based Nanoreactor Technology for Producing Processable Sub-40 Nm 3D COF Nanoparticles at Atmospheric Conditions

AutorLlauradó-Capdevila, Gemma; Veciana, Andrea; Guarducci, Maria Aurora; Mayoral, Alvaro; Pons, Ramon; Hertle, Lukas; Ye, Hao; Mao, Minmin; Sevim, Semih; Rodríguez-San-Miguel, David; Sorrenti, Alessandro; Jang, Bumjin; Wang, Zuobin; Chen, Xiang-Zhong; Nelson, Bradley J.; Matheu, Roc; Franco, Carlos CSIC ORCID; Pané, Salvador; Puigmartí-Luis, Josep
Palabras claveProcessability
3D COFs
Crystal growth
Micelles
Microrobots
Nanoreactor technology
Fecha de publicación25-dic-2023
EditorWiley-Blackwell
CitaciónAdvanced Materials (2023)
ResumenCovalent organic frameworks (COFs) are crystalline materials with intrinsic porosity that offer a wide range of potential applications spanning diverse fields. Yet, the main goal in the COF research area is to achieve the most stable thermodynamic product while simultaneously targeting the desired size and structure crucial for enabling specific functions. While significant progress is made in the synthesis and processing of 2D COFs, the development of processable 3D COF nanocrystals remains challenging. Here, a water-based nanoreactor technology for producing processable sub-40 nm 3D COF nanoparticles at ambient conditions is presented. Significantly, this technology not only improves the processability of the synthesized 3D COF, but also unveils exciting possibilities for their utilization in previously unexplored domains, such as nano/microrobotics and biomedicine, which are limited by larger crystallites.
Versión del editorhttps://doi.org/10.1002/adma.202306345
URIhttp://hdl.handle.net/10261/341834
DOI10.1002/adma.202306345
ISSN09359648
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