Literature DB >> 32496493

Multivalent ion-induced re-entrant transition of carboxylated cellulose nanofibrils and its influence on nanomaterials' properties.

Luis Valencia1, Emma M Nomena2, Susanna Monti3, Walter Rosas-Arbelaez4, Aji P Mathew5, Sugam Kumar6, Krassimir P Velikov7.   

Abstract

In this work, we identify and characterize a new intriguing capability of carboxylated cellulose nanofibrils that could be exploited to design smart nanomaterials with tuned response properties for specific applications. Cellulose nanofibrils undergo a multivalent counter-ion induced re-entrant behavior at a specific multivalent metal salt concentration. This effect is manifested as an abrupt increase in the strength of the hydrogel that returns upon a further increment of salt concentration. We systematically study this phenomenon using dynamic light scattering, small-angle X-ray scattering, and molecular dynamics simulations based on a reactive force field. We find that the transitions in the nanofibril microstructure are mainly because of the perturbing actions of multivalent metal ions that induce conformational changes of the nanocellulosic chains and thus new packing arrangements. These new aggregation states also cause changes in the thermal and mechanical properties as well as wettability of the resulting films, upon water evaporation. Our results provide guidelines for the fabrication of cellulose-based films with variable properties by the simple addition of multivalent ions.

Entities:  

Year:  2020        PMID: 32496493     DOI: 10.1039/d0nr02888f

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  2 in total

1.  Calcium Ion-Induced Structural Changes in Carboxymethylcellulose Solutions and Their Effects on Adsorption on Cellulose Surfaces.

Authors:  Vishnu Arumughan; Tiina Nypelö; Merima Hasani; Anette Larsson
Journal:  Biomacromolecules       Date:  2021-12-22       Impact factor: 6.988

2.  Dragon Fruit Foliage: An Agricultural Cellulosic Source to Extract Cellulose Nanomaterials.

Authors:  Tuyet Phung Thi Anh; Toan Viet Nguyen; Phuong Thi Hoang; Phuong Vu Thi; Thoa Nguyen Kim; Quyen Nguyen Van; Chien Nguyen Van; Yen Dao Hai
Journal:  Molecules       Date:  2021-12-20       Impact factor: 4.411

  2 in total

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