学术成果展示(不超30个) 代表成果如下: 论文 1. Guang W., et al., Low-Cost Hyperelastic Fuller-Dome-Structured Nanocellulose Aerogels by Dual Templates for Personal Thermal Management. Advanced Materials 2. Jiabing F., et al., Fire-Safe Aerogels and Foams for Thermal Insulation: From Materials to Properties. Advanced Materials 3. Xilin Z., et al., Highly Thermal Conductive and ElectromagneticShielding Polymer Nanocomposites from Waste Masks. Nano-Micro Letters 4. Xilin Z., et al., Nerve-Fiber-Inspired Construction of 3D Graphene “Tracks” Supported by Wood Fibers for Multifunctional biocomposite with Metal-Level Thermal Conductivity. Advanced Functional Materials 5. Xin Z., et al., Preparation of strong and thermally conductive spider-silk inspired soybean-protein-based adhesive for thermally conductive wood-based composites. ACS Nano 6. Xinxin H., et al., A reusable soy protein adhesive with enhanced weather resistance through construction of a cutin-like structure. Cell Reports Physical Science 7. Li C., et al., A Coral Shell-Inspired Biomimetic Soy Protein Adhesive Toward Electromagnetic Shielding Wood-Based Composites. Small 8. Zheng, L., et al., Preparation of strong, water retention, and multifunctional soybean flour-based adhesive inspired by lobster shells and milk skin. Composites Part B-Engineering 9. Xinxin H., et al., A strong soy protein-based adhesive with excellent water retention. Chemical Engineering Journal 授权专利 1. 一种无醛大豆蛋白胶黏剂及其制备方法与应用ZL202210457182.X 2. 高初粘性植物蛋白胶黏剂及其制备方法与应用ZL202210672454.8 3. 一种高强度多功能植物蛋白胶黏剂及其制备方法与应用ZL202210459782.X 4. 植物蛋白胶黏剂及其制备方法与应用ZL202210432100.6 5. 高涂布预压性植物蛋白胶黏剂及其制备方法与应用ZL202210670587.1 6. 一种抗菌豆粕胶黏剂及其制备方法与应用ZL202110565312.7 7. 一种韧性大豆蛋白基胶黏剂及其制备方法与应用ZL202110518176.6 8. 一种多重网络结构的无醛大豆蛋白胶黏剂及其制备方法ZL201911372733.7
|