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Updated: Jan 11, 2026

Synthesis of Biocompatible Liquid Crystal Elastomer Foams as Cell Scaffolds for 3D Spatial Cell Cultures
Published on: April 11, 2017
Green Polylactide/Cellulose Nanocrystal Nanocomposite Foams with Superior Compressive and Thermal Insulation
Baogou Wu1,2, Qian Ren1, Ranran Si1
1Ningbo Key Lab of Polymer Materials, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, China.
Abstract:
Incorporating nanoparticles is a common strategy to enhance the cellular structure and mechanical properties of poly(lactic acid) (PLA) foams. However, conventional nanoparticles often compromise the intrinsic green nature of PLA and suffer from poor dispersion and weak interfacial adhesion, limiting their effectiveness in the development of high-performance green foams. Herein, a sustainable approach was presented by grafting poly(D-lactide) (PDLA) onto biodegradable cellulose nanocrystals (CNCs), which were subsequently incorporated into the poly(L-lactide) (PLLA) matrix. The interfacial stereocomplexation between the two enantiomers not only improves CNC dispersion but also strengthens interfacial interactions. Consequently, PLA composite foam with a high expansion ratio (up to 48.5) and a fine bimodal cellular structure was fabricated via an eco-friendly supercritical CO2 foaming process. The resulting foams exhibit superior thermal insulation (thermal conductivity as low as 31.7 mW/(m K)) and a specific compressive modulus 213% higher than that of neat PLLA foam, highlighting their potential for sustainable packaging and construction applications.
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