chitin nanowhiskers
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LWT ◽  
2021 ◽  
pp. 112833
Author(s):  
Alaitz Etxabide ◽  
Paul A. Kilmartin ◽  
Juan I. Maté ◽  
Joaquín Gómez-Estaca

2021 ◽  
Vol 17 (2) ◽  
pp. 154-165
Author(s):  
Syazeven Effatin Azma Mohd Asri ◽  
Zainoha Zakaria ◽  
Azman Hassan ◽  
Mohamad Haafiz Mohamad Kassim ◽  
Reza Arjmandi

The incorporation of fermented chitin nanowhiskers (FCHW) into poly(lactic acid) (PLA) increased the tensile modulus and strength of PLA at the expense of ductility. The brittleness of PLA can be overcome with the use of plasticizer such as polyethylene glycols (PEG). The objective of this study is to investigate the effect of FCHW on the tensile and thermal properties PLA incorporated with PEG as plasticizer (PLA/PEG). PLA/PEG and FCHW reinforced PLA/PEG nanocomposites were prepared using solution mixing technique. Thermogravimetric analysis (TGA) was used to determine the thermal properties while tensile properties were determined from the tensile test. The incorporation of PEG successfully increased the ductility and tensile strength of PLA at the expense of modulus. Based on the tensile properties, 5 phr PEG was chosen for further investigation on the effect of FCHW on PEG modified PLA. Incorporation of 1 phr FCHW PLA/PEG increased the tensile strength and Young’s modulus. However, the tensile strength decreased with further addition of FCHW. The elongation at break of PLA/PEG decreased drastically with the incorporation of 1 phr FCHW and decreased gradually with further increase of FCHW. The thermal stability from TGA of FCHW reinforced PLA/PEG nanocomposites at 5 phr FCHW content was observed to be significantly higher compared to PLA/PEG, as indicated by T20 and Tmax.


2021 ◽  
pp. 118116
Author(s):  
Antonio G.B. Pereira ◽  
Cátia S. Nunes ◽  
Adley F. Rubira ◽  
Edvani C. Muniz ◽  
André R. Fajardo

2020 ◽  
Vol 247 ◽  
pp. 116746
Author(s):  
Jintian Wang ◽  
Zhiqiang Chen ◽  
Aaron (Qi) Guan ◽  
Nicole Raymonde Demarquette ◽  
Hani E. Naguib

2020 ◽  
Vol 245 ◽  
pp. 116505 ◽  
Author(s):  
Midhun Dominic C.D. ◽  
Rani Joseph ◽  
P.M. Sabura Begum ◽  
Aswathy Raghunandanan ◽  
Nelwin T. Vackkachan ◽  
...  

Biomedicines ◽  
2020 ◽  
Vol 8 (9) ◽  
pp. 305
Author(s):  
Valentina A. Petrova ◽  
Alexey S. Golovkin ◽  
Alexander I. Mishanin ◽  
Dmitry P. Romanov ◽  
Daniil D. Chernyakov ◽  
...  

In this work, a bilayer chitosan/sodium alginate scaffold was prepared via a needleless electrospinning technique. The layer of sodium alginate was electrospun over the layer of chitosan. The introduction of partially deacetylated chitin nanowhiskers (CNW) stabilized the electrospinning and increased the spinnability of the sodium alginate solution. A CNW concentration of 7.5% provided optimal solution viscosity and structurization due to electrostatic interactions and the formation of a polyelectrolyte complex. This allowed electrospinning of defectless alginate nanofibers with an average diameter of 200–300 nm. The overall porosity of the bilayer scaffold was slightly lower than that of a chitosan monolayer, while the average pore size of up to 2 μm was larger for the bilayer scaffold. This high porosity promoted mesenchymal stem cell proliferation. The cells formed spherical colonies on the chitosan nanofibers, but formed flatter colonies and monolayers on alginate nanofibers. The fabricated chitosan/sodium alginate bilayer material was deemed promising for tissue engineering applications.


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