Camellia meal-based formaldehyde-free adhesive with self-crosslinking, and anti-mildew performance
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Changzhu Li | Zhihong Xiao | Shifeng Zhang | Wei Zhang | Hanzhang Wang | Guoliang Chen | Hongjuan Wu
[1] Boye Liu,et al. An environment-friendly wood adhesive using modified wheat gluten by isophorone diisocyanate , 2021, Industrial Crops and Products.
[2] Sheng-Qing Yang,et al. Developing an antifungal and high-strength soy protein-based adhesive modified by lignin-based polymer , 2021 .
[3] M. Skrifvars,et al. Spruce Bark-Extracted Lignin and Tannin-Based Bioresin-Adhesives: Effect of Curing Temperatures on the Thermal Properties of the Resins , 2021, Molecules.
[4] Jianzhang Li,et al. Bioinspired mineral–organic hybridization strategy to produce a green high performance soybean meal based adhesive , 2021 .
[5] Wei Zhang,et al. Polyurethane as high-functionality crosslinker for constructing thermally driven dual-crosslinking plant protein adhesion system with integrated strength and ductility , 2021 .
[6] Changlei Xia,et al. Dual-Network Nanocross-linking Strategy to Improve Bulk Mechanical and Water-Resistant Adhesion Properties of Biobased Wood Adhesives , 2020 .
[7] Changlei Xia,et al. Design and build an elastic crosslinked network to strengthen and toughen soybean-meal based bioadhesive using organo-sepiolite and greener crosslinker triglycidylamine , 2020 .
[8] Yanning Sun,et al. Novel lignin-containing high-performance adhesive for extreme environment. , 2020, International journal of biological macromolecules.
[9] S. Shi,et al. Soy protein adhesive with bio-based epoxidized daidzein for high strength and mildew resistance , 2020 .
[10] M. H. Rasoulifard,et al. Synthesis and characterization of alkoxy silane modified polyurethane wood adhesive based on epoxidized soybean oil polyester polyol , 2020 .
[11] Wei Zhang,et al. Degradation mechanism of Acacia mangium tannin in NaOH/urea aqueous solution and application of degradation products in phenolic adhesives , 2020 .
[12] Wei Zhang,et al. Designing Biomimetic Microphase‐Separated Motifs to Construct Mechanically Robust Plant Protein Resin with Improved Water‐Resistant Performance , 2020 .
[13] H. Memon,et al. Rheological and Dynamic Mechanical Properties of Abutilon Natural Straw and Polylactic Acid Biocomposites , 2019, International Journal of Polymer Science.
[14] Boye Liu,et al. Peanut meal-based wood adhesives enhanced by urea and epichlorohydrin , 2019, Royal Society Open Science.
[15] R. Ruseckaite,et al. Sustainable hot-melt adhesives based on soybean protein isolate and polycaprolactone , 2019, Industrial Crops and Products.
[16] Jianzhang Li,et al. Core-shell nanohybrid elastomer based on co-deposition strategy to improve performance of soy protein adhesive. , 2019, ACS applied materials & interfaces.
[17] Wei Zhang,et al. Depolymerization and characterization of Acacia mangium tannin for the preparation of mussel-inspired fast-curing tannin-based phenolic resins , 2019, Chemical Engineering Journal.
[18] S. Shi,et al. Tough, strong, and biodegradable composite film with excellent UV barrier performance comprising soy protein isolate, hyperbranched polyester, and cardanol derivative , 2019, Green Chemistry.
[19] X. Sun,et al. Laccase/TEMPO-modified lignin improved soy-protein-based adhesives: Adhesion performance and properties , 2019, International Journal of Adhesion and Adhesives.
[20] C. Mai,et al. Dialdehyde Cellulose as a Bio-Based Robust Adhesive for Wood Bonding , 2019, ACS Sustainable Chemistry & Engineering.
[21] Gaigai Duan,et al. High-performance polyamide-imide films and electrospun aligned nanofibers from an amide-containing diamine , 2019, Journal of Materials Science.
[22] Q. Gao,et al. Preparation and characterization of a soy protein-based high-performance adhesive with a hyperbranched cross-linked structure , 2018, Chemical Engineering Journal.
[23] Anuj Kumar,et al. Liquefaction of lignocellulosic materials and its applications in wood adhesives—A review , 2018, Industrial Crops and Products.
[24] Wentao Gan,et al. Mussel Adhesive-Inspired Design of Superhydrophobic Nanofibrillated Cellulose Aerogels for Oil/Water Separation , 2018, ACS Sustainable Chemistry & Engineering.
[25] S. Shi,et al. Development of natural fiber-reinforced composite with comparable mechanical properties and reduced energy consumption and environmental impacts for replacing automotive glass-fiber sheet molding compound , 2018 .
[26] Marleen Kamperman,et al. Bioinspired Underwater Adhesives by Using the Supramolecular Toolbox , 2018, Advanced materials.
[27] Jianping Wu,et al. Chemically Modified Canola Protein–Nanomaterial Hybrid Adhesive Shows Improved Adhesion and Water Resistance , 2018 .
[28] C. Mai,et al. Formation of Uniform Multi-Stimuli-Responsive and Multiblock Hydrogels from Dialdehyde Cellulose , 2017 .
[29] Q. Gao,et al. A high-performance bio-adhesive derived from soy protein isolate and condensed tannins , 2017 .
[30] Junyou Shi,et al. Formulation of a novel soybean protein‐based wood adhesive with desired water resistance and technological applicability , 2016 .
[31] Q. Gao,et al. Toughening improvement to a soybean meal-based bioadhesive using an interpenetrating acrylic emulsion network , 2016, Journal of Materials Science.
[32] Wei Zhang,et al. High-Performance and Fully Renewable Soy Protein Isolate-Based Film from Microcrystalline Cellulose via Bio-Inspired Poly(dopamine) Surface Modification , 2016 .
[33] Jing Luo,et al. Effects of polyisocyanate on properties and pot life of epoxy resin cross-linked soybean meal-based bioadhesive , 2016 .
[34] M. Ramezani,et al. Development of new active packaging film made from a soluble soybean polysaccharide incorporating ZnO nanoparticles. , 2016, Carbohydrate polymers.
[35] Wei Zhang,et al. Physicochemical properties of modified soybean-flour adhesives enhanced by carboxylated styrene-butadiene rubber latex , 2016 .
[36] Wei Zhang,et al. An eco-friendly wood adhesive from soy protein and lignin: performance properties , 2015 .
[37] Jing Luo,et al. Soybean meal-based wood adhesive enhanced by ethylene glycol diglycidyl ether and diethylenetriamine , 2015 .
[38] Soo-Jin Park,et al. Synthesis and application of epoxy resins: A review , 2015 .
[39] Maili Liu,et al. Intermolecular interaction and the extended wormlike chain conformation of chitin in NaOH/urea aqueous solution. , 2015, Biomacromolecules.
[40] A. Pizzi. Wood products and green chemistry , 2016, Annals of Forest Science.
[41] Jianzhang Li,et al. Preparation of Reinforced Soy Protein Adhesive Using Silane Coupling Agent as an Enhancer , 2014 .
[42] Zhenhua Gao,et al. Nano-scale blocking mechanism of MMT and its effects on the properties of polyisocyanate-modified soybean protein adhesive , 2014 .
[43] Zhangkang Wu,et al. Cross-linked soy-based wood adhesives for plywood , 2014 .
[44] Ning Zhang,et al. The effects of ultrasonic/microwave assisted treatment on the water vapor barrier properties of soybean protein isolate-based oleic acid/stearic acid blend edible films , 2014 .
[45] Jiuping Rao,et al. Water resistances and bonding strengths of soy-based adhesives containing different carbohydrates , 2013 .
[46] Jens Krause,et al. Polyurethanes: versatile materials and sustainable problem solvers for today's challenges. , 2013, Angewandte Chemie.
[47] Dianhua Wu,et al. Synthesis of a bio-based polyamidoamine-epichlorohydrin resin and its application for soy-based adhesives , 2013 .
[48] Liu Yang,et al. Integrated control of citrus green and blue mold and sour rot by Bacillus amyloliquefaciens in combination with tea saponin , 2011 .
[49] Chun-peng Wang,et al. Evaluation of Forestry Residue-Source Oil-Tea Cake as an Extender for Phenol-Formaldehyde Plywood Adhesive , 2010 .
[50] P. Stefani,et al. Medium-density particleboards from modified rice husks and soybean protein concentrate-based adhesives. , 2010, Bioresource technology.
[51] C. Baley,et al. Investigations of the use of a mussel-inspired compatibilizer to improve the matrix-fiber adhesion of a biocomposite , 2009 .
[52] B. Mahltig,et al. Functionalising wood by nanosol application , 2008 .
[53] G. Rassam. Use of Soy/PF resin for Old Corrugated Container (OCC)-wood Composites , 2008 .
[54] Manjusri Misra,et al. Influence of processing methods and fiber length on physical properties of kenaf fiber reinforced soy based biocomposites , 2007 .
[55] M. Dunky. Adhesives based on Formaldehyde condensation resins , 2004 .
[56] B. Wunderlich. Reversible crystallization and the rigid-amorphous phase in semicrystalline macromolecules , 2003 .
[57] D. Myers,et al. Alkali-modified soy protein with improved adhesive and hydrophobic properties , 1995 .