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中国林科院林化所 生物质材料化学研究室 2025年招收化学等背景的硕士生1名
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中国林业科学研究院 林产化学工业研究所 生物质材料化学研究室 2025年招收化学、材料等背景的硕士生1名. 调剂具体要求:接收08工学,07理学化学学科(0703)的调剂考生。 硕士专业: 082200轻工技术与工程,包装用生物基精细化学品 方向 课题组近五年在Advanced Materials, Advanced Functional Materials, Chemical Engineering Journal, Chemical Communication,Macromolecules, Green Chemistry, ACS Sustainable Chemistry & Engineering, ChemSusChem, Carbohydrate Polymers等期刊发表SCI论文20余篇。 联系邮箱 wjf118@126.com 王基夫 老师 王基夫,博士,研究员,博士生导师,生物质材料化学研究室副主任;中国林学会生物质材料科学分会委员;中国林学会青年工作委员会委员;中国林学会林产化学化工分会理事;《中国林业百科全书》生物质能源及材料卷编委;《生物质化学工程》编委; 主要从事林业生物质——纤维素、木质素、松香、油脂、糠醛等改性及功能化应用基础研究,针对纤维素、木质素、松香和油脂分子等结构特点及特性,通过活性聚合等技术构筑了纤维素、木质素基弹性材料、松香基抗菌高分子材料、无醛木材料胶黏剂等功能性材料,先后主持国家自然科学基金等省部级以上项目8项,发表学术论文118篇(h-index=34,他引次数2683),近五年Advanced Materials (if=30.849)、Advanced Functional Materials(if=18.2)等sci杂志发表论文60余篇;获美国发明专利3件,中国发明专利15件;在上述基础上,获得中国林草青年科技奖、吉林省科学技术奖二等奖(排名第4),梁希青年论文奖一等奖2项和三等奖1项,南京市第十届自然科学优秀论文二等奖;入选百千万人才工程省部级人选,江苏省“333高层次人才培养工程”和第三届中国林科院杰出青年等人才培养计划;2021年被评为国家林业和草原局科技领军人才;2022年入选中国林科院首批“青年英才工程”青年领军人才支持计划。 近三年课题小组发表的SCI论文 [1] Luo, T.; Qi, J.; Yu, J.; Wang, C.; Chu, F.; Wang, J.*; Lignin-Based Macromolecular Photoinitiator for Non-Migration, Self-Adhesive, and Water-Resistant Eutectogels toward Underwater Reliable Communication. Advanced Functional Materials. 2025, 35, 2414481. (SCI影响因子:18.5,一区) [2] Qi, J.; Luo, T.; Yu, J.; Wang, C.; Chu, F.; Wang J*., Controllable structure, super adhesion, multifunctional, conductive pressure-sensitive adhesive for electronic skin: Enhancing cohesion by cellulose-derived covalent crosslinking. Chemical Engineering Journal. 2024, 499, 156561. (SCI影响因子:13.1,一区) [3] Luo, T.; Lu, C.; Qi, J.; Wang, C.; Chu, F.; Wang J*., Fabrication of well-defined lignin-derived elastomers by atom transfer radical polymerization and Diels-Alder reaction towards sustainable, super-tough and high temperature-resistant hot-melt adhesives. Chem. Eng. J. 2024, 479, 147729. [4] Luo, T.; Guo, X.; Qiu, Y.; Zhang, D.; Lu, C.; Wang, C.; Wang J*.; Yuan, T*.; Chu, F., Sustainable, temperature-tolerant, dual network conductive pressure sensitive adhesive from cellulose and rosin for wearable sensing. International Journal of Biological Macromolecules. 2024, 280, 136439. (SCI影响因子:7.7,一区) [5] Luo, T.; Guo, X.; Qi, J.; Yu, J.; Lu, C.; Wang, C.; Chu, F.; Wang J*., Fabrication of liquid-free ionic conductive elastomer (ICE) from cellulose-rosin derived poly(esterimide) towards temperature-tolerant and solvent-resistant UV shadowless adhesive and sensor. International Journal of Biological Macromolecules. 2024, 280, 136439. (SCI影响因子:7.7,一区). [6] Lu, C.; Wang, X.; Jia, Q.; Xu, S.; Wang, C.; Du, S.; Wang J*.; Yong, Q*.; Chu, F*., 3D printed mechanical robust cellulose derived liquid-free ionic conductive elastomer for multifunctional electronic devices. Carbohydr. Polym. 2024, 324, 121496. (SCI影响因子:11.2,一区) [7] Lu, C.; Wang, X.; Shen, Y.; Xu, S.; Huang, C.; Wang, C.; Xie, H.; Wang J*.; Yong, Q*.; Chu, F*., Skin-Like Transparent, High Resilience, Low Hysteresis, Fatigue-Resistant Cellulose-Based Eutectogel for Self-Powered E-Skin and Human–Machine Interaction. Adv. Funct. Mater. 2023, n/a (n/a), 2311502. [8] Wang, X.; Shen, Y.; Xu, S.; Huang, C.; Lai, C.; Yong, Q.; Chu, F.; Algadi, H.; Zhang, D*.; Lu, C*.; Wang J*., Lignin in situ self-assembly facilitates biomimetic multiphase structure for fabricating ultra-strong and tough ionic conductors for wearable pressure and strain sensors. Advanced Composites and Hybrid Materials 2023, 6 (3), 84. [9] Lu, C.; Shen, Y.; Wang, X.; Xu, S.; Wang J*.; Yong, Q*.; Chu, F*., Biomimetic ultra-strong, ultra-tough, degradable cellulose-based composites for multi-stimuli responsive shape memory. Int. J. Biol. Macromol. 2023, 226, 1468-1476. [10] Lu, C., X. Wang, W. Hua, S. Wang, S. Wang J*.; Yong, Q*.; Chu, F*. Chu, Fabrication of cellulose/plant oil based flexible epoxy thermoset with excellent UV-blocking performance. Journal of Polymer Science 2023, 61 (7), 561-570. [11] Lu, C.; Liu, Y.; Wang, C.; Yong, Q.; Wang J*.; Chu, F., An integrated strategy to fabricate bio-based dual-cure and toughened epoxy thermosets with photothermal conversion property. Chem. Eng. J. 2022, 433, 134582. |
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