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以微晶纤维素作为多元醇、纤维素纳米晶体作为添加剂制备聚氨酯薄膜:反应受所用异氰酸酯基团源的低粘度促进。

Polyurethane films formation from microcrystalline cellulose as a polyol and cellulose nanocrystals as additive: Reactions favored by the low viscosity of the source of isocyanate groups used.

作者信息

Porto Deyvid S, de Faria Clara Maria Gonçalves, Inada Natalia M, Frollini Elisabete

机构信息

Macromolecular Materials and Lignocellulosic Fibers Group, Center of Research on Science and Technology of BioResources, São Carlos Institute of Chemistry, Trabalhador São Carlense Ave, 400, 13566-590 São Carlos, SP, Brazil.

São Carlos Institute of Physics, University of São Paulo, Trabalhador São Carlense Ave, 400, 13566-590 São Carlos, SP, Brazil.

出版信息

Int J Biol Macromol. 2023 May 1;236:124035. doi: 10.1016/j.ijbiomac.2023.124035. Epub 2023 Mar 14.

Abstract

To simultaneously form films while synthesizing solvent-free and catalyst-free bio-based polyurethanes, hexamethylene diisocyanate trimer was selected as an isocyanate group source to produce a low-viscosity reaction medium for dispersing high contents of microcrystalline cellulose (MCC, polyol) and cellulose nanocrystals (CNC). Castor oil was used as an additional polyol source. Up to 80 % of the MCC was dispersed, producing a film exhibiting the highest T (72 °C), tensile strength (18 MPa), and Young's modulus (522.4 MPa). 12.5 % (30 % MCC) and 7.5 % (50 % MCC) of CNC dispersed in the reaction medium formed films stiffer than their counterparts. All the films exhibited transparency and high crystallinity. The contact angle/zeta potential (ζ) indicated hydrophobic film surfaces. At pH 7.4, ζ suggested that the films interacted with physiological fluids favorably. The films were non-cytotoxic, and the composites exhibited cell growth compared with the control. The reported results, as far as it is known, are unprecedented.

摘要

为了在合成无溶剂且无催化剂的生物基聚氨酯的同时形成薄膜,选择六亚甲基二异氰酸酯三聚体作为异氰酸酯基团源,以制备用于分散高含量微晶纤维素(MCC,多元醇)和纤维素纳米晶体(CNC)的低粘度反应介质。蓖麻油用作额外的多元醇源。高达80%的MCC被分散,制得的薄膜具有最高的热变形温度(72℃)、拉伸强度(18MPa)和杨氏模量(522.4MPa)。分散在反应介质中的12.5%(30%MCC)和7.5%(50%MCC)的CNC形成的薄膜比其对应物更硬。所有薄膜均表现出透明度和高结晶度。接触角/ζ电位(ζ)表明薄膜表面具有疏水性。在pH值为7.4时,ζ表明薄膜与生理流体具有良好的相互作用。这些薄膜无细胞毒性,与对照相比,复合材料表现出细胞生长。据所知,所报道的结果是前所未有的。

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