段博(武漢大學副研究員)

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段博,博士,武漢大學化學與分子科學學院副研究員,研究方向是天然高分子材料。

基本介紹

  • 中文名:段博
  • 外文名:DUAN BO
  • 畢業院校武漢大學
  • 職業:教師
人物經歷,研究方向,發表論文,媒體報導,

人物經歷

2019 武漢大學 化學與分子科學學院, 副研究員

研究方向

天然高分子材料

發表論文

1. Jinhua Guo#, Qingtao Li#, Rongrong Zhang#, Lina Zhang, Xiaodong Cao*, Bo Duan*, et al, Loose Pre-Cross-Linking Mediating Cellulose Self-Assembly for 3D Printing Strong and Tough Biomimetic Scaffolds, Biomacromolecules, 2022, doi.org/10.1021
2. Xinghuan Lin#, Xin Xing#, Lina Zhang, Hongye Yang*, Bo Duan*, et al, Anisotropic Hybrid Hydrogels Constructed via the Noncovalent Assembly for Biomimetic Tissue Scaffold, Adv. Funct. Mater., 2022, 2112685
3. Yiwen Yang#, Hao Zhang#, Lina Zhang, Aixi Yu*, Bo Duan*, et al, A quaternized chitin derivatives, egg white protein and montmorillonite composite sponge with antibacterial and hemostatic effect for promoting wound healing,Composites Part B, 2022, 234, 109661
4. Rongrong Zhang, Linglong Deng, Xiaodong Cao*, Aixi Yu*, Bo Duan*, et al, Solvent Mediating the in Situ Self-Assembly of Polysaccharides for 3D Printing Biomimetic Tissue Scaffolds, ACS Nano 2021, 15, 17790
5. Xinghuan Lin, Lina Zhang, Bo Duan*, Polyphenol-mediated chitin self-assembly for constructing a fully naturally resourced hydrogel with high strength and toughness. Mater. Horiz.,2021,8, 2503
6. Yiwen Yang, Lina Zhang*, Yanfeng Wang*, Bo Duan*, et al., In Situ Exfoliated Silk Fibroin Nanoribbons Enhanced Chitin Hydrogel for Bile Duct Restoration. Chem. Eng. J.,2021, 442, 130088
7. Lin Huang, Lina Zhang*, Aixi Yu*, Bo Duan*, et al., Biocompatible Chitin Hydrogel Incorporated with PEDOT Nanoparticles for Peripheral Nerve Repair. ACS Appl. Mater. Interfaces 2021, 13, 16106.
8. Hu Tu, Kang Xie, Qiang Fu*, Bo Duan*, Lina Zhang, et al., Superior strength and highly thermoconductive cellulose/ boron nitride film by stretch-induced alignment. J. Mater. Chem. A, 2021,9, 10304
9. Hu Tu, Mengxiang Zhu, Bo Duan*, Lina Zhang*, Recent Progress in High-Strength and Robust Regenerated Cellulose Materials. Adv. Mater.2021, 33, 2000682
10. 段博*,塗虎,張俐娜*,可持續高分子-纖維素新材料研究進展,高分子學報,2021,1, 66
11. Hu Tu, Kang Xie, Bo Duan*, Qiang Fu*, Lina Zhang*, et al., Green and Economical Strategy for Spinning Robust Cellulose Filaments. ACS Sustainable Chem. Eng. 2020, 8, 14927
12. Renjun Tu#, Bo Duan#, Xiaoqing Song, Ting Xie*, et al., Multiple Niche Compartments Orchestrate Stepwise Germline Stem Cell Progeny Differentiation, Current Biology, 2021, 31, 827
13. Fan Zou#, Renjun Tu#, Bo Duan#, Sisi Li*, Ting Xie*, et al., Drosophila YBX1 homolog YPS promotes ovarian germ line stem cell development by preferentially recognizing 5-methylcytosine RNAs. PNAS, 2020, 117, 3603
14. Bo Duan, Yao Huang, Ang Lu*, Lina Zhang*, Recent Advances in Chitin Based Materials Constructed via Physical Methods. Prog, Polym, Sci, 2018, 82, 1.
15. Bo Duan, Kangquan Shou, Xiaojuan Su, Yahui Niu, Guan Zheng, Yao Huang, Aixi Yu, Yu Zhang, Hong Xia, and Lina Zhang*, Hierarchical Microspheres Constructed from Chitin Nanofibers Penetrated Hydroxyapatite Crystals for Bone Regeneration. Biomacromolecules, 2017, 18, 2080.
16. Bo Duan‡, Xiang Gao‡, Xu Yao, Yan Fang, Liang Huang*, Lina Zhang*, Unique elastic N-doped carbon nanofibrous microspheres with hierarchical porosity derived from renewable chitin for high rate supercapacitors,Nano Energy. 2016, 27, 482.
17. Bo Duan, Xing Zheng, Zhixiong Xia, Xiaoli Fan, Lin Guo, Jianfeng Liu, Yanfeng Wang, Qifa Ye, Lina Zhang*, Highly Biocompatible Nanofibrous Microspheres Self-Assembled from Chitin in NaOH/Urea Aqueous Solution as Cell Carriers. Angew. Chem. Int. Ed. 2015, 54, 5152.
18. Bo Duan, Feng Liu, Meng He, Lina Zhang*, Ag-Fe3O4 nanocomposites@chitin microspheres constructed by in situ one-pot synthesis for rapid hydrogenation catalysis. Green Chem., 2014, 16, 2835.
19. Bo Duan, Huimin Gao, Meng He, Lina Zhang*, Hydrophobic Modification on Surface of Chitin Sponges for Highly Effective Separation of Oil. ACS Appl. Mater. Interfaces, 2014, 6, 19933.
20. Bo Duan, Chunyu Chang, Lina Zhang*, Beibei Ding, Jie Cai*; High strength films with gas-barrier fabricated from chitin solution dissolved at low temperature J. Mater. Chem. A, 2013, 1,1867.

媒體報導

武漢大學段博《Mater.Horiz.》:高強度、高韌性全天然水凝膠
武漢大學段博副研究員等人在前期研究中引入了表氯醇(ECH)化學交聯的方法來製造甲殼素水凝膠,使水凝膠的抗壓強度和韌性分別提升至3.98 MPa和0.45 MJ·m -3。然而,這類化學方法具有潛在的毒性,最終還是不利於甲殼素在生物材料和可持續研究領域的發展。近期,該團隊首次報導了一種與已有合成方法截然不同的多酚介導自組裝(PMS)策略,可同時提升水凝膠的強度和韌性。作者通過引入多酚類化合物單寧酸(TA)來與甲殼素的自組裝進行競爭,以形成弱相互作用的甲殼素-單寧酸和強相互作用的甲殼素-甲殼素網路。一方面,高密度的非共價鍵交聯賦予了PMS水凝膠高模量和強度性質;另一方面,相對較弱的甲殼素-單寧酸交聯起到了“犧牲鍵”的作用,可分散能量提升材料韌性。這一全天然強健甲殼素-單寧酸水凝膠展現出了可觀的抗菌、生物相容等性質,在食品、生物醫學等領域均存在套用前景。。相關工作以“Polyphenol mediating chitin self-assembly for constructing the full natural resourced hydrogel with high strength and toughness”為題發表在Materials Horizons。
武大段博/四大傅強:拉伸誘導取向,高強度和導熱的纖維素/氮化硼薄膜水凝膠
武漢大學段博副研究員/四川大學傅強教授團隊結合化學-物理雙重交聯和拉伸取向策略,構建高度有序的纖維素納米纖維網路和邊緣羥基化的氮化硼納米片(BNNS-OH)結構,以製造具有優異導熱性的堅固的纖維素/BNNS-OH複合膜。對齊的再生纖維素納米纖維網路通過共價鍵和氫鍵相互作用誘導了BNNS-OH的面內取向。

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