2019
DOI: 10.1021/acs.biomac.9b00481
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β-Chitin Nanofibril Self-Assembly in Aqueous Environments

Abstract: Chitin is one of the most studied biopolymers but the understanding of how it assembles from molecules to micro-fibers is still limited. Organisms are able to assemble chitin with precise control over polymorphism, texture, and final morphology. The produced hierarchical structure leads to materials with outstanding mechanical properties. In this study the self-assembly in aqueous solutions of β-chitin nano-fibrils, as far as possible similar to their native state, is investigated. These nano-fibrils increase … Show more

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Cited by 20 publications
(33 citation statements)
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“…The obtained β-chitin nanofibers after 60 cycles had a mean diameter in the range of 10-15 nm. A similar nanofibril diameter (6.4-6.9 nm) was previously observed for β-chitin nanofiber prepared from Loligo vulgaris at different pH levels [36] and from Todarodes pacificus (5-10 nm) [5].…”
Section: Tem Analysissupporting
confidence: 82%
See 1 more Smart Citation
“…The obtained β-chitin nanofibers after 60 cycles had a mean diameter in the range of 10-15 nm. A similar nanofibril diameter (6.4-6.9 nm) was previously observed for β-chitin nanofiber prepared from Loligo vulgaris at different pH levels [36] and from Todarodes pacificus (5-10 nm) [5].…”
Section: Tem Analysissupporting
confidence: 82%
“…This is only one example of their feasibility to be handled. This process takes advantage of chitin nanofibrils' natural tendency to self-assemble in aqueous media to form β-chitin fibers [36].…”
Section: Nanofibrous β-Chitin Film Preparation and Characterizationmentioning
confidence: 99%
“…Here, a single variable has been addressed, but future studies will focus on a multivariable analysis of this system. Chitin was chosen as the polymer to test this system as this biopolymer grants different advantages since it is cheap, mechanically robust [ 18 , 19 , 20 ], and has a propensity to self-assemble into crystalline nano-fibrils [ 21 , 22 , 23 ]. Moreover, the biocompatibility of this polymer promotes its use as material for medical applications, from drug delivery to wound healing and regenerative medicine [ 24 , 25 , 26 , 27 , 28 , 29 ].…”
Section: Introductionmentioning
confidence: 99%
“…The most important sources for the extraction of α-chitin, which is the most diffused form commercially available, are represented by the wastes of the seafood industry, constituted mainly by shells of crabs and shrimps. In recent years, the possible technological applications of β-chitin have been attracting growing interest and have motivated its extraction from waste products. The richest source of β-chitin is squid pens.…”
Section: Introductionmentioning
confidence: 99%