4.7 Article

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

期刊

POLYMERS
卷 12, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/polym12040756

关键词

protein adhesive; soybean meal; mold resistance; water resistance; metal complexation

资金

  1. National Natural Science Foundation of China [31722011]
  2. National Key Research and Development Program of China [2017YFD0601205]
  3. Beijing Forestry University Outstanding Young Talent Cultivation Project [2019JQ03004]

向作者/读者索取更多资源

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.

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