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用硼氮化合物对纤维素材料进行改性

Modification of Cellulosic Materials with Boron-Nitrogen Compounds.

作者信息

Stepina Irina, Zhukov Aleksey, Bazhenova Sofia

机构信息

Department of Building Materials Science, National Research Moscow State University of Civil Engineering Yaroslavskoe sh. 26, 129337 Moscow, Russia.

出版信息

Polymers (Basel). 2023 Jun 23;15(13):2788. doi: 10.3390/polym15132788.

Abstract

Wood fiber and its products are modified to increase fire and bio-resistance. The best results are achieved by using modifiers that enter into chemical interaction with the hydroxylated substrate, forming the organic matrix of the materials. The purpose of the research described in the article was to study the possibility of using boron-nitrogen compounds to modify cellulose and cellulose-containing materials to improve the performance, bio- and fire-protective properties of construction materials, as well as to optimize the consumption of boron-nitrogen compounds. As a result of the research, it was found that the boron-nitrogen compounds used in the compositions developed here chemically interact with hydroxyl groups at the C-atom of cellulose. The chemical interaction of boron-nitrogen compounds with cellulose is an inter-crystalline process occurring without destruction of the crystal structure of the substrate since the modifier molecules bind with the more accessible hydroxyl groups of the amorphous regions of cellulose. Thus, surface modification with boron-nitrogen compounds does not result in accelerated aging of cellulose-containing materials and loss of strength but, on the contrary, increases the durability of wooden structures.

摘要

木质纤维及其制品经过改性以提高防火性和生物抗性。使用能与羟基化底物发生化学相互作用、形成材料有机基体的改性剂可获得最佳效果。本文所述研究的目的是研究使用硼氮化合物改性纤维素及含纤维素材料,以改善建筑材料的性能、生物防护和防火性能,并优化硼氮化合物的用量。研究结果表明,本文所开发组合物中使用的硼氮化合物与纤维素C原子上的羟基发生化学相互作用。硼氮化合物与纤维素的化学相互作用是一个晶间过程,该过程在不破坏底物晶体结构的情况下发生,因为改性剂分子与纤维素无定形区域中更容易接近的羟基结合。因此,用硼氮化合物进行表面改性不会导致含纤维素材料加速老化和强度损失,相反,会提高木结构的耐久性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42a9/10346624/c1a80c11c13c/polymers-15-02788-g001.jpg

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