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受贻贝和藻类启发的一种坚韧且防霉的大豆基胶粘剂

A Tough and Mildew-Proof Soybean-Based Adhesive Inspired by Mussel and Algae.

作者信息

Bai Yue, Liu Xiaorong, Shi Sheldon Q, Li Jianzhang

机构信息

Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing 100083, China.

Key Laboratory of Wood Materials Science and Utilization, Beijing Forestry University, Beijing 100083, China.

出版信息

Polymers (Basel). 2020 Mar 31;12(4):756. doi: 10.3390/polym12040756.

Abstract

Despite the recent advances in protein-based adhesives, achieving strong adhesion and mold resistance in wet environment is challenging. Herein, a facile fabrication technology of preparing tough bio-adhesive by incorporating soybean meal and blood meal is presented. Inspired by the marine mussel byssi and brown algae, metal coordination was introduced into a loosely bound protein system to construct multiple chemical cross-linking networks. Mixed alkali-modified blood meal (mBM) was mixed with soybean meal, then 1,6-hexane dioldiglycidyl ether (HDE) and zinc ion were introduced to fabricate soybean meal and blood meal-based adhesives. The attained adhesives exhibited good thermal stability, water resistance (the wet shear strength is 1.1 MPa), and mold resistance, with appropriate solid content (34.3%) and relatively low moisture uptake (11.9%). These outstanding performances would be attributed to the reaction of 1,6-hexane dioldiglycidyl ether with protein to form a preliminary cross-linking network; subsequently, the coordination of zinc ions with amino or carboxyl strengthened and toughened the adhesive. Finally, the calcium ions gelled the adhesives, providing cohesion force and making the network structure more compact. This study realized the value-added utilization of protein co-products and developed a new eco-friendly bio-based adhesive.

摘要

尽管基于蛋白质的粘合剂最近取得了进展,但在潮湿环境中实现强粘附性和抗霉菌性仍具有挑战性。在此,提出了一种通过掺入豆粕和血粉制备坚韧生物粘合剂的简便制造技术。受海洋贻贝足丝和褐藻的启发,将金属配位引入到松散结合的蛋白质体系中,构建多个化学交联网络。将混合碱改性血粉(mBM)与豆粕混合,然后引入1,6-己二醇二缩水甘油醚(HDE)和锌离子,制备基于豆粕和血粉的粘合剂。所制备的粘合剂表现出良好的热稳定性、耐水性(湿剪切强度为1.1MPa)和抗霉菌性,具有合适的固含量(34.3%)和相对较低的吸湿性(11.9%)。这些优异的性能归因于1,6-己二醇二缩水甘油醚与蛋白质反应形成初步交联网络;随后,锌离子与氨基或羧基的配位增强并增韧了粘合剂。最后,钙离子使粘合剂凝胶化,提供内聚力并使网络结构更紧凑。本研究实现了蛋白质副产品的增值利用,并开发了一种新型环保生物基粘合剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88c1/7240608/b5d675f803d5/polymers-12-00756-sch001.jpg

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