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In this study, lignin nanoparticles (LN) and octadecylamine-modified LN (LN-ODA) were utilized as coating materials to enhance the hydrophobic, antioxidant, and ultraviolet radiation-shielding (UV-shielding) properties of a TEMPO-oxidized nanocellulose film (TOCNF). The water contact angle (WCA) of the TOCNF was approximately 53° and remained stable for 1 min, while the modified LN-ODA-coated TOCNF reached over 130° and maintained approximately 85° for an hour. Pure TOCNF exhibited low antioxidant properties (4.7 %), which were significantly enhanced in TOCNF-LN (81.6 %) and modified LN-ODA (10.3 % to 27.5 %). Modified LN-ODA-coated TOCNF exhibited antioxidant properties two to six times higher than those of pure TOCNF. Modified LN-ODA exhibited thermal degradation max (T) at 421 °C, while pure LN showed the main degradation temperature at approximately T 330 °C. The thermal stability of TOCNF-LN-ODA-coated materials remained consistent with that of pure TOCNF, while the crystallinity index of the sample showed a slight decrease due to the amorphous nature of the lignin structure. The tensile strength of TOCNF was approximately 114.1 MPa and decreased to 80.1, 51.3, and 30.3 MPa for LN-ODA coating at 5, 10, and 15 g/m, respectively.
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http://dx.doi.org/10.1016/j.ijbiomac.2024.134464 | DOI Listing |
ACS Appl Mater Interfaces
August 2025
Department of Applied Mechanics and Aerospace Engineering, Waseda University, Tokyo 169-8555, Japan.
Lightweight and environmentally friendly cellulose nanofiber (CNF)-graphene composites have attracted increasing attention as promising structural materials. However, the commonly used TEMPO (2,2,6,6-tetramethylpiperidine-1-oxyl) oxidized CNF (TO-CNF), typically exfoliated to the nanofibril scale (∼3 nm), possesses limited hydrophobic surfaces and exhibits strong hydrophilicity, which hinders hydrophobic interactions with graphene. In this study, delaminated CNF (dCNF) with enhanced hydrophobic surface exposure was prepared via lithium bromide trihydrate (LBTH) pretreatment followed by TEMPO oxidation and high-pressure homogenization.
View Article and Find Full Text PDFLangmuir
July 2025
College of Textile and Clothing Engineering, Soochow University, Suzhou 215123, China.
MXene fibers, characterized by their high capacitance and conductivity, hold significant promise as electrode materials for wearable supercapacitors (SCs) in the field of textile electronics. Nevertheless, the inherent brittleness of pure MXene fibers stems from the dense stacking and weak interactions between the MXene flakes. This work presents a strategy to improve the mechanical robustness and electrochemical performance of MXene fibers through the incorporation of 2,2,6,6-tetramethylpiperidin-1-oxyl-oxidized cellulose nanofibers (TO-CNFs) via a wet-spinning technique.
View Article and Find Full Text PDFCarbohydr Polym
July 2025
Tianjin Key Laboratory of Pulp and Paper, Tianjin University of Science and Technology, Tianjin 300457, China.
Flame retardant materials are essential for safety, yet their development is often hindered by trade-offs between efficiency, aging resistance, and mechanical properties. Traditional organic flame retardants are inefficient and degrade over time, while inorganic alternatives, despite their effectiveness, are difficult to integrate into composites. Here we showed the synthesis of a novel inorganic silica-based flame retardant, PDA@MSNs-TMSB, which chemically modified nanocellulose fibrils, enhancing flame retardancy, aging resistance, and toughness without compromising integrity.
View Article and Find Full Text PDFLangmuir
March 2025
State Key Laboratory of Biobased Fiber Manufacturing Technology, Tianjin University of Science and Technology, Tianjin 300457, P. R. China.
Pickering particles can self-assemble to form a rigid barrier film at the oil-water interface, effectively inhibiting droplet aggregation and stabilizing the emulsion. This essay explores the potential of Zein/TOCNF (TEMPO-oxidized cellulose nanofiber) complex aqueous dispersion as an environmentally friendly, nontoxic, versatile, and inexpensive cleaning agent based on the Pickering effect. The Zein/TOCNF complex exhibited an improvement in its surface hydrophobicity compared to that of pure TOCNF, so that it could be used as Pickering emulsion stabilizers.
View Article and Find Full Text PDFInt J Biol Macromol
March 2025
Tianjin Key Laboratory of Pulp & Paper, Tianjin University of Science and Technology, Tianjin, 300457, PR China; State Key Laboratory of Biobased Fiber Manufacturing Technology, Tianjin University of Science and Technology, Tianjin 300457, PR China. Electronic address:
Poly (lactic acid) (PLA) is a widely produced bio-based polymer known for its biodegradability and renewability, but its brittleness, low heat resistance, and weak mechanical properties limit its broader use. To address these challenges, TEMPO-oxidized cellulose nanofibers (TOCNF) were extracted from dissolving pulp using TEMPO-oxidation and high-pressure homogenization. These TOCNF were modified with silane to reduce hydrophilicity and improve compatibility with PLA.
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