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Nanofibrillar networks enable universal assembly of superstructured particle constructs

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Mattos, B.D. Nanofibrillar networks enable universal assembly of superstructured particle constructs.pdf (3,317Mb)
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10.1126/sciadv.aaz7328
 
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hdl:2117/192251

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Mattos, Bruno D.
Tardy, Blaise L.
Greca, Luiz G.
Kämäräinen, Tero
Xiang, Wenchao
Cusola Aumedes, OriolMés informacióMés informacióMés informació
Magalhães, Washington
Rojas, Orlando J.
Document typeArticle
Defense date2020-05-08
Rights accessOpen Access
Attribution-NonCommercial 3.0 Spain
Except where otherwise noted, content on this work is licensed under a Creative Commons license : Attribution-NonCommercial 3.0 Spain
Abstract
Superstructured colloidal materials exploit the synergies between components to develop new or enhanced functions. Cohesion is a primary requirement for scaling up these assemblies into bulk materials, and it has only been fulfilled in case-specific bases. Here, we demonstrate that the topology of nanonetworks formed from cellulose nanofibrils (CNFs) enables robust superstructuring with virtually any particle. An intermixed network of fibrils with particles increases the toughness of the assemblies by up to three orders of magnitude compared, for instance, to sintering. Supramolecular cohesion is transferred from the fibrils to the constructs following a power law, with a constant decay factor for particle sizes from 230nm to 40 ¿m. Our findings are applicable to other nanofiber dimensions via a rationalization of the morphological aspects of both particles and nanofibers. CNF-based cohesion will move developments of functional colloids from laboratory-scale toward their implementation in large-scale nanomanufacturing of bulk materials
CitationMattos, B.D. [et al.]. Nanofibrillar networks enable universal assembly of superstructured particle constructs. "Science advances", 8 Maig 2020, vol. 6, núm. 19, p. eaaz7328:1-eaaz7328:10. 
URIhttp://hdl.handle.net/2117/192251
DOI10.1126/sciadv.aaz7328
ISSN2375-2548
Publisher versionhttps://advances.sciencemag.org/content/6/19/eaaz7328
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  • Departament d’Enginyeria Gràfica i de Disseny - Articles de revista [262]
  • CELBIOTECH - Grup de Recerca: Enginyeria Paperera - Articles de revista [45]
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