Preparation and Characterization of Lignin Nanoparticles from Different Plant Sources

Author:

Ortega-Sanhueza Isidora1ORCID,Girard Victor2ORCID,Ziegler-Devin Isabelle2ORCID,Chapuis Hubert2ORCID,Brosse Nicolas2ORCID,Valenzuela Francisca3,Banerjee Aparna3ORCID,Fuentealba Cecilia45ORCID,Cabrera-Barjas Gustavo6,Torres Camilo1ORCID,Méndez Alejando1,Segovia César7,Pereira Miguel8ORCID

Affiliation:

1. Facultad de Ciencias Forestales, Universidad de Concepción, Concepción 4070374, Chile

2. Laboratoire d’Etude et de Recherche sur le MAtériau Bois (LERMAB), Faculté des Sciences et Techniques, Université de Lorraine, 54500 Vandœuvre-lès-Nancy, France

3. Instituto de Ciencias Aplicadas, Facultad de Ingeniería, Universidad Autónoma de Chile, Talca 3467987, Chile

4. Unidad de Desarrollo Tecnológico (UDT), Universidad de Concepción, Av. Cordillera 2634, Parque Industrial Coronel, P.O. Box 4051 Mail 3, Concepción, Chile

5. Centro Nacional de Excelencia para la Industria de la Madera (CENAMAD), Pontificia Universidad Católica de Chile, Av. Vicuña Mackena, 4860, Santiago 7820436, Chile

6. Facultad de Ciencias para el Cuidado de la Salud, Universidad San Sebastián Campus Las Tres Pascualas, Lientur 1457, Concepción 4080871, Chile

7. Centre d’Essais Textile Lorrain, CETELOR—Université de Lorraine, 27 rue Philippe Seguin, 88051 Epinal, France

8. Facultad de Ingeniería, Departamento de Ingeniería Química, Universidad de Concepción, Concepción 4070374, Chile

Abstract

This article presents new research on producing lignin nanoparticles (LNPs) using the antisolvent nanoprecipitation method. Acetone (90%) served as the lignin solvent and water (100%) as the antisolvent, using five types of lignins from various sources. Comprehensive characterization techniques, including NMR, GPC, FTIR, TEM, and DLS, were employed to assess both lignin and LNP properties. The antioxidant activity of the LNPs was evaluated as well. The results demonstrated the successful formation of spherical nanoparticles below 100 nm with initial lignin concentrations of 1 and 2%w/v. The study highlighted the crucial role of lignin purity in LNP formation and colloidal stability, noting that residual carbohydrates adversely affect efficiency. This method offers a straightforward, environmentally friendly approach using cost-effective solvents, applicable to diverse lignin sources. The innovation of this study lies in its demonstration of a cost-effective and eco-friendly method to produce stable, nanometric-sized spherical LNPs. These LNPs have significant potential as reinforcement materials due to their reinforcing capability, hydrophilicity, and UV absorption. This work underscores the importance of starting material purity for optimizing the process and achieving the desired nanometric dimensions, marking a pioneering advancement in lignin-based nanomaterials.

Funder

Franco-Chilean EcosSud Collaborative Program

Agencia Nacional de Investigación y Desarrollo

Publisher

MDPI AG

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