基本情况简介: 张道海,男,工学博士/博士后,三级研究员,博士生/硕士生导师;承担国家自然基金项目、中央引导地方基金项目、贵州省重大专项等项目20余项;获贵州省科技进步二等奖等省部级奖8项;获贵州省科学家工作站、贵州省高层次创新型百层次人才、贵州省最美科技工作者、贵州省科技创新人才团队领衔人、贵州省人民政府特殊津贴、贵州省优秀青年科技人才、贵州省青年科技奖、中组部“西部之光”访问学者、贵州民族大学师德标兵等荣誉。 代表著作: [1] DU J, ZHAN X, XU Y, et al. High-performance zinc-ion hydrogel electrolytes based on molecular-level hybridization of PVA with polymer quantum dots [J]. Journal of Materials Science & Technology, 2025, 212: 251-258. [2] ZHOU T, ZHANG D, DIAO K, et al. Constructing PAM/PEG electromagnetic shielding hydrogels based on MWCNTs@TiO2 [J]. Materials Today Nano, 2025, 29. [3] XU Y, ZHAN X, DU J, et al. Fluorescent hydrogel with high toughness response based on lanthanide Metals: Material Adhesion, multicolor Modulation, information encryption [J]. Chemical Engineering Journal, 2024, 489. [4] ZHANG D, ZHAN X, ZHOU T, et al. N/B co-doped porous carbon with superior specific surface area derived from activation of biomass waste by novel deep eutectic solvents for Zn-ion hybrid supercapacitors [J]. Journal of Materials Science & Technology, 2024, 193: 22-28. [5] DU J, ZHAN X, XU Y, et al. Heat-Resistant Covalent Organic Framework (COF) PVA-Hybridized Gel Electrolyte for the Preparation of Dendrite-Free Zinc-Ion Batteries [J]. Nano Letters, 2024, 24(43): 13592-13599. [6] XU Y, PEI M, ZHAN X, et al. Electromagnetic shielding materials of highly conductive PVA/PAA/hydrogel cross-linked with MXene [J]. Progress in Organic Coatings, 2024, 194: 108592. [7] ZHOU T, ZHAN X, DIAO K, et al. RGO loaded Fe3O4 strategy to construct high toughness PAM hydrogel for electromagnetic shielding [J]. Progress in Organic Coatings, 2024, 196. [8] DU J, XUE Y, XU Y, et al. High Water Permeability Interfacial Polymerized PVDF/EAA Composite Nanofiltration Membrane for Dye Separation [J]. ACS Applied Polymer Materials, 2024, 6(21): 13102-13109. [9] DIAO K, XU Y, DU J, et al. High toughness and strong electromagnetic shielding properties of PAM/PEG dual network hydrogels [J]. IJMMM, 2025, 32(3): 747-755. [10] ZHAN X, SUN J, ZHANG D. Evaluation of the performance of porous PBAT/modified zeolite composite materials for adsorption of Pb(II) ions from wastewater [J]. Polymer Composites, 2023, 44(11): 7876-7886. 承担教学课程:高分子物理,功能材料制备及应用,纳米材料及应用,材料成形与加工等。 |