Nanochitin: Chemistry, Structure, Assembly, and Applications
Long Bai,Liang Li,Marianelly Esquivel,Blaise L. Tardy,Siqi Huan,Xun Niu,Shouxin Liu,Guihua Tang,Yimin Fan,Orlando J. Rojas +9 more
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TL;DR: In this paper , the authors discuss recent achievements in the isolation, deconstruction, and fractionation of chitin nanostructures of varying axial aspects (nanofibrils and nanorods) along with methods for their modification and assembly into functional materials.
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Abstract: Chitin, a fascinating biopolymer found in living organisms, fulfills current demands of availability, sustainability, biocompatibility, biodegradability, functionality, and renewability. A feature of chitin is its ability to structure into hierarchical assemblies, spanning the nano- and macroscales, imparting toughness and resistance (chemical, biological, among others) to multicomponent materials as well as adding adaptability, tunability, and versatility. Retaining the inherent structural characteristics of chitin and its colloidal features in dispersed media has been central to its use, considering it as a building block for the construction of emerging materials. Top-down chitin designs have been reported and differentiate from the traditional molecular-level, bottom-up synthesis and assembly for material development. Such topics are the focus of this Review, which also covers the origins and biological characteristics of chitin and their influence on the morphological and physical-chemical properties. We discuss recent achievements in the isolation, deconstruction, and fractionation of chitin nanostructures of varying axial aspects (nanofibrils and nanorods) along with methods for their modification and assembly into functional materials. We highlight the role of nanochitin in its native architecture and as a component of materials subjected to multiscale interactions, leading to highly dynamic and functional structures. We introduce the most recent advances in the applications of nanochitin-derived materials and industrialization efforts, following green manufacturing principles. Finally, we offer a critical perspective about the adoption of nanochitin in the context of advanced, sustainable materials.
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Citations
Sustainable Bioplastics Derived from Renewable Nanofillers for Food Packaging
Usman Lawal Usman,Sushmita Banerjee,N.B. Singh +2 more
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TL;DR: Sustainable bioplastics and nanofillers derived from renewable resources are eco-friendly alternatives to traditional plastics for food packaging. They offer improved barrier properties, reduced environmental footprint, and increased shelf life. However, challenges such as processing difficulties and limited scalability need to be addressed. The future outlook is promising, but further research is required to optimize performance and address limitations.
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Laser-assisted electrohydrodynamic jet printing of hierarchical nanostructure
Kai Li,Chao Wang,Long Sun,Junyang Fang,Mingzhen Li,Fei Du,Yexin Wang,Xiaoying Wang,Jinbang Li,Qiao Zhang,Dianbo Ruan +10 more
TL;DR: Laser-assisted electrohydrodynamic jet printing of hierarchical nanostructure can produce hierarchical nanostructures with size down to 180 nm and increased surface area.
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Evaluating the strategies to improve strength and water-resistance of chitin nanofibril assembled structures: Molecule-bridging, heat-treatment and deacidifying
Tai Cheng,K.J. Chai,Kai Liang,Yali Ji +3 more
TL;DR: Researchers evaluated strategies to improve strength and water-resistance of chitin nanofibril assembled structures, finding heat-treatment and deacidifying effective, with deacidifying being more efficient, and combining these with molecule-bridging producing strong, water-resistant films.
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Preparation of Oil-in-Water Type Pickering Emulsions Stabilized by Partially Deacetylated Nanochitin and pH-triggered Drug Release
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1
Adenosine Triphosphate/Chitin Whisker/Phenylboronic Acid-Modified Wool Fabrics with Enhanced Dyeability
Xuemei He,Ting Zhu,Guangyun Deng,Lu Cai,Haiyan Mao +4 more
TL;DR: The adenosine triphosphate/chitin whisker/phenylboronic acid-modified wool fabrics exhibit enhanced dyeability with improved color depth and fastness.
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