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资格研究员,硕士生导师

主要从事生物质基纳米材料制备、功能化及其在环境等领域应用的研究,尤其在纤维素等生物质多糖的功能化改性与组装积累了一定的研究经验,发展了纳米纤维素材料定向设计改性的新策略,创新性的研发了具有特殊结构和功能的纳米纤维素基的软物质材料,并揭示了纳米纤维素复杂结构组装体的形成机制。近五年发表SCI论文20余篇,其中以第一作者或通讯作者在Angew. Chem., Int. Ed.SmallAdv. Colloid Interface Sci., Green Chem.Fuel等期刊发表SCI论文10篇


教育背景

2016.10-2020.10哥廷根大学(德国),生物质化学专业,自然科学博士学位

2013.09-2016.06 大连工业大学,轻工技术与工程专业,工学硕士学位

2009.09-2013.06 大连工业大学,轻化工程专业,工学学士学位


工作经历

2021.02-至今 江苏大学,环境与安全工程学院,生物质能源研究院,资格研究员

2020.11-2021.01 哥廷根大学(德国),研究助理


研究兴趣

1、纤维素等生物质多糖的功能化改性

2多糖基纳米材料自组装

3生物质基功能材料的开发与应用研究

43D打印技术与材料设计


科研项目

1. 国家自然科学基金青年项目,2023.01-2025.12,主持

2. 江苏省自然科学基金青年项目,2022.07-2025.06,主持

3. 江苏省“双创博士”,2022.09-2024.08,主持

4. 江苏省高等学校自然科学基础研究面上项目,2021.10-2023.09,主持

5. 植物纤维功能材料国家林业和草原局重点实验室开放基金,2022.07-2024.06,主持

6. 江苏大学高级人才科研启动基金,2021.06-2024.05


发表论文

1. Chen, M.; Tong, H.; Liu, H.*; Lu, J.; Du, J.; Tao, Y.; Cheng, Y.; Wang, H. *, A cyclic process for enzymatic hydrolysis and fermentation of lactic acid pretreated reed. Ind. Crops Prod. 2022, 181, 114848. (IF=6.449, 1区/Top)

2. Liu, H.*; Pang, B.; Zhang, K.*, Breath figure templated self-assembly of surface-acylated cellulose nanowhiskers confined as honeycomb films. Cellulose 2021, 28, 10939-10951. (IF=6.123, 1/Top)

3. Pang, B.; Liu, H.*; Zhang, K.*, Recent progress on Pickering emulsions stabilized by polysaccharides-based micro/nanoparticles. Adv. Colloid Interface Sci. 2021, 296, 102522. (通讯作者, IF=12.984, 1/Top)

4. Liu, H.; Pang, B.; Tang, Q.; Müller, M.; Zhang, H.; Dervisoglu, R.; Zhang, K., Self-assembly of surface-acylated cellulose nanowhiskers and graphene oxide for multiresponsive Janus films with time-dependent dry-state structures. Small 2020, 16, 2004922. (IF=13.281, 1区/Top)

5. Liu, H.; Pang, B.; Garces, R.; Dervisoglu, R.; Chen, L.; Andreas, L.; Zhang, K., Helical fibers via evaporation-driven self-assembly of surface-acylated cellulose nanowhiskers. Angew. Chem., Int. Ed. 2018, 57 (50), 16323-16328. (IF=12.257, 1区/Top)

6. Liu, H.; Pang, B.; Zhao, Y.; Lu, J.; Han, Y.; Wang, H., Comparative study of two different alkali-mechanical pretreatments of corn stover for bioethanol production. Fuel 2018, 221, 21-27. (IF=5.128, 1区/Top)

7. Liu, H.; Pang, B.; Zhou, J.; Han, Y.; Lu, J.; Li, H.; Wang, H., Comparative study of pretreated corn stover for sugar production using cotton pulping black liquor (CPBL) instead of sodium hydroxide. Ind. Crops Prod. 2016, 84, 97-103. (IF=4.191, 1区/Top)

8. Liu, H.; Pang, B.; Wang, H.; Li, H.; Lu, J.; Niu, M., Optimization of alkaline sulfite pretreatment and comparative study with sodium hydroxide pretreatment for improving enzymatic digestibility of corn stover. J. Agric. Food Chem. 2015, 63 (12), 3229-3234. (IF=3.571, 1区/Top)

9. Liu, P.1; Liu, H.1; Schäfer, T.; Gutmann, T.; Gibhardt, H.; Qi, H.; Tian, L.; Zhang, X.; Buntkowsky, G.; Zhang, K., Unexpected selective alkaline periodate oxidation of chitin for the isolation of chitin nanocrystals. Green Chem. 2021, 23 (2), 745-751. (共同一作,IF=10.182, 1区/Top)

10. Pang, B.1; Liu, H.1; Florian Rehfeldt; Zhang, K., High internal phase Pickering emulsions stabilized by dialdehyde amylopectin/chitosan complex nanoparticles. Carbohydr. Polym. 2021, 258, 117655. (共同一作,IF=9.381, 1区/Top)

11. Pang, B., Zhang, H., Liu, H., Wang, X., Schilling, M., Rehfeldt, F., Zhang, K., High internal phase Pickering emulsions stabilized by polymeric dialdehyde cellulose-based nanoparticles. ACS Sustainable Chem. Eng. 2020, 8 (19), 7371-7379. (IF=7.632, 1区/Top)

12. Pang, B.; Liu, H.; Liu, P.; Zhang, H.; Avramidis, G.; Chen, L.; Deng, X.; Viöl, W.; Zhang, K., Robust, easy-cleaning superhydrophobic/superoleophilic copper meshes for oil/water separation under harsh conditions. Adv. Mater. Interfaces 2019, 6 (11), 1900158. (IF=4.948, 2区)

13. Xia, F.; Liu, H.; Lu, J.; Lv, Y.; Zhai, S.; An, Q.; Cheng, Y.; Wang, H., An integrated biorefinery process to produce butanol and pulp from corn straw. Ind. Crops Prod. 2019, 140 (15), 111648. (IF=4.244, 1区/Top)

14. Wang, X.; Huang, H.; Liu, H.; Rehfeldt, F.; Wang, X.; Zhang, K., Multi-responsive bilayer hydrogel actuators with programmable and precisely tunable motions. Macromol. Chem. Phys. 2019, 220 (6), 1800562. (IF=2.335, 3区)

15. Pang, B.; Liu, H.; Liu, P.; Peng, X.; Zhang, K., Water-in-oil Pickering emulsions stabilized by stearoylated microcrystalline cellulose. J. Colloid Interface Sci. 2018, 513, 629-637. (IF=6.361, 2区)

16. Liu, P.; Pang, B.; Tian, L.; Schäfer, T.; Gutmann, T.; Liu, H.; Volkert, C. A.; Buntkowsky, G.; Zhang, K., Efficient, self-terminating isolation of cellulose nanocrystals through periodate oxidation in Pickering emulsions. ChemSusChem 2018, 11 (20), 3581-3585. (IF=7.804, 2区)

17. Pang, B.; Köhler, R.; Roddatis, V.; Liu, H.; Wang, X.; Viöl, W.; Zhang, K., One-step synthesis of quadrilateral-shaped slver nanoplates with lamellar structures tuned by amylopectin derivatives. ACS Omega 2018, 3 (6), 6841-6848. (IF=2.584, 3区)

18. Pang, B.; Yan, J.; Yao, L.; Liu, H.; Guan, J.; Wang, H.; Liu, H., Preparation and characterization of antibacterial paper coated with sodium lignosulfonate stabilized ZnO nanoparticles. RSC Adv. 2016, 6 (12), 9753-9759. (IF=3.108, 3区)

19. Li, B.; Liu, H.; Xu, H.; Pang, B.; Mou, H.; Wang, H.; Mu, X., Characterization of the detailed relationships of the key variables in the process of the alkaline sulfite pretreatment of corn stover by multivariate analysis. Bioresources 2014, 9, 2757-2771. (IF=1.334, 3区)


联系地址:江苏省镇江市学府路301号,江苏大学生物质能源研究

电子邮件:liuhuan0502@hotmail.com; hliu3@ujs.edu.cn


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