学术成果展示(不超30个)
1. J. L. Wen, T.Q. Yuan, S. L. Sun, F, Xu, R. C. Sun*. Understanding the chemical transformations of lignin during ionic liquid pretreatment. Green Chemistry, 2014 (1), 16, 181-190. 2. J. L. Wen, S. L. Sun, T.Q. Yuan, F, Xu, R. C. Sun*. Understanding the chemical and structural transformations of lignin macromolecule during torrefaction. Applied Energy, 2014, 121, 1-9.(ESI高被引) 3. J. L. Wen, S. L. Sun, T.Q. Yuan, R. C. Sun*. Structural elucidation of whole lignin from Eucalyptus based on preswelling and enzymatic hydrolysis, Green Chemistry, 2015, 17(3), 1589-1596. 4. H. M. Wang, B. Wang, J. L. Wen*, T. Q. Yuan, R. C. Sun*. Structural Characteristics of Lignin Macromolecules from Different Eucalyptus Species, ACS Sustainable Chemistry & Engineering, 2017, 5, 11618-11627. 5. H. M. Wang, B. Wang, J. L. Wen*, S. F. Wang, Q. Shi. R. C. Sun*. Green and efficient conversion strategy of Eucalyptus based on mechanochemical pretreatment, Energy Conversion and Management, 2018, 175, 112-120. 6. X. J. Shen, J. L. Wen*, Q. Q. Mei, X. Chen, D. Sun, T. Q. Yuan, R. C. Sun*, Facile fractionation of lignocelluloses by biomass-derived deep eutectic solvent (DES) pretreatment for cellulose enzymatic hydrolysis and lignin valorization. Green Chemistry, 2019, 21, 275-283 (ESI高被引). 7. H. M. Wang, C.Y. Ma, H.Y. Li, T. Y. Chen, J. L. Wen*, X. F. Cao, X. L. Wang, T. Q. Yuan, R. C. Sun*, Structural variations of lignin macromolecules from early growth stages of poplar cell walls, ACS Sustainable Chemistry & Engineering, 2020, 8, 1813-1822 8. X. J. Shen, T. Y. Chen, H. M. Wang, Q. Q. Mei, F. X. Yue, S.N. Sun, J. L. Wen*, T.Q. Yuan, R.C. Sun. Structural and morphological transformations of lignin macromolecules during bio-based deep eutectic solvent (DES) pretreatment, ACS Sustainable Chemistry & Engineering, 2020, 8, 2130-2037. (ESI高被引) 9. S. C. Sun, Y. Xu, J. L. Wen*, T. Q. Yuan, R. C. Sun*. Recent advances in lignin-based carbon fibers (LCFs): precursors, fabrications, properties, and applications, Green Chemistry, 2022, 24, 5709-5738. 10. C. Y Ma, L. H. Xu, Q. Sun, X. J. Shen, J. L. Wen*, T. Q. Yuan. Tailored one-pot lignocellulose fractionation to maximize biorefinery toward controllable producing lignin nanoparticles and facilitating enzymatic hydrolysis, Chemical Engineering Journal, 2022, 450, 138315-138326. 11. C. Y Ma, L. H. Xu, Q. Sun, S. N. Sun, X. F. Cao, J. L. Wen*, T. Q. Yuan. Ultrafast alkaline deep eutectic solvent pretreatment for enhancing enzymatic saccharification and lignin fractionation from industrial xylose residue, Bioresource Technology, 2022, 352, 127065-127073. 12. L. H. Xu, C. Y. Ma, C. Zhang, Y. Xu, J. L. Wen*, T. Q. Yuan. An integrated acetic acid catalyzed hydrothermal-pretreatment (AAP) and rapid ball-milling for producing high-yield of xylo-oligosaccharides, fermentable glucose and lignin from poplar wood, Renewable Energy, 2022, 201, 691-699. 13. Y. Xu, S. C. Sun, C. Zhang, C. Y. Ma, J. L. Wen*, T. Q. Yuan. Complete valorization of bamboo biomass into multifunctional nanomaterials by reactive deep eutectic solvent pretreatment: Towards a waste-free biorefinery, Chemical Engineering Journal, 2023, 462, 142213-142222. 14. Y. F Gao, C.Y. Ma*, Q. Sun, X. X. Zhang, J. Liu, J. L. Wen*, R. X. Chen*, H. L. Wang, T. Q. Yuan. Rapid and efficient preparation of cationized lignin for downstream high value-added utilization of biodegradable antimicrobial nanofibrous membranes, Chemical Engineering Journal, 2024, 481, 148514-148523. 15. C. Zhang, X. J. Shen*, M.Y. Liu, J. L. Wen*, T. Q. Yuan. Uncovering the Structure of Lignin from Moso Bamboo with Different Tissues and Growing Ages for Efficient Ambient-Pressure Lignin Depolymerization, ACS Sustainable Chemistry & Engineering, 2023, 11(37), 13778-13786. 16. C. Zuo, Y. Xu, X.Y. Hui, L. H. Xu, J. L. Wen *, T. Q. Yuan. Cascade fractionation of bamboo shoot shells into high-yield xylose, easily digestible cellulose and high-quality lignin nanoparticles by tailored catalytic hydrothermal–hydrated alkaline deep eutectic solvents pretreatment, Chemical Engineering Journal, 2024, 485,149622-149634. 17. X.Y. Hui, C. Zuo, Y. Xu, B. Wang, J. L. Wen *, T. Q. Yuan. Facilitating the fabrication of diverse bio-based nanomaterials from bamboo using one-pot hydrated deep eutectic solvent pretreatment, Chemical Engineering Journal, 2024, 493, 152517-152527. 18. J. Liu , L.H. Xu , C. Zhang, J. L. Wen*, T. Q. Yuan. 3D-printed Bio-inspired porous electrode by bidirectional enhancement strategy with high mass loading and enhanced energy density for supercapacitors, Chemical Engineering Journal, 2024, 500, 157390-157400 19. S. C. Sun, S.W Hao, Y.Q Liu, S.F. Sun, Y. Xu, M. Jiang, C.Y Shao*, J.L Wen,* and R.C Sun*. Mechanically resilient, self-healing, and environmentally adaptable eutectogel-based triboelectric nanogenerators for all-weather energy harvesting and human−machine interaction. ACS Nano, 2025, 19, 1, 811-825. 20. L.H Xu, P.F. Wang, Y. Xu, J. Liu, X.P. Peng, J. Liu, X.J. Shen, J.L Wen,* Q.Z. Li, T.Q. Yuan. A combined genetic modification and chemical engineering strategy for designing high-performance cellulose nanofibrils separators, Chemical Engineering Journal, 2025, 503,158402-158411. 21. C.Y. Ma, Q. Sun, L.H. Xu, H.Z. Zhang, J.L. Wen*, Z.L. Li *, T.Q. Yuan. Recyclable and low-content deep eutectic solvent pretreatment at room temperature for fractionating uncondensed lignin and enhancing enzymatic saccharification. Chemical Engineering Journal, 2025, 507,160491-160501. 22. L.H. Xu, Y.T. He, Y. Xu, S.C. Sun, J. Liu, J. Yang. J.L. Wen*, T.Q. Yuan*. Deep eutectic solvent gel electrolytes reinforced with cellulose nanofibers for high-performance flexible solid-state supercapacitors, Advanced Functional Materlals, 2025, 35(38), 2501263. 23. Y. Xu, S.Y Jiang, SC Sun, X-Y Xu, JL Wen,* and TQ Yuan. Organosolv Fractionation of Kraft Lignin: Unlocking Its Potential as a Multifunctional Active Ingredient in Sunscreens, Biomacromolecules, 2025, 26, 8124−8135. 24. C. Zuo, X.Y Hui, P-A Xin, H-N Qi, Z-H Sun, J.L., Wen * and T-Q Yuan*. A green one-pot strategy for sustainable fully lignin-based adhesives, Green Chemistry, 2026, DOI: 10.1039/d5gc05305f 相关专利 1. 一种木质素的分离提纯和降解方法,ZL201710344643.1 2. 一种从木质纤维生物质中制备高得率高芳基醚键结构木质素的方法,ZL 202010873273.2 3. 一种碱性低共熔溶剂快速分离木质纤维生物质全组分的方法,ZL 202210826632.8 4. 催化水热耦合短时球磨联产低聚木糖、高芳基醚键木质素和葡萄糖的方法,ZL202210350448.0 5. 一种利用常温碱性低共熔溶剂从工业废弃物中制备纳米木质素的方法,ZL202210692800.9 6. 一种脱甲氧基木质素及其制备方法和应用,ZL202410042823.4 7. 一种高效、高得率制备杜仲胶的方法,ZL202310864124.3 8. 植物秸秆全组分利用方法,ENF级环保型木材胶粘剂、本色浆及其制备方法和应用,ZL202410490368.4 9. 一种环氧胶粘剂及其制备方法和应用, CN 202510942292.9 10. 一种改性木质素及其制备方法和应用, CN 202510954409.5 11. 一种皮克林乳液及其制备方法和应用,CN 2024110638987 12. 一种木质素基环氧树脂固化剂及其制备方法和应用,CN202411780798.6 13. 工业木质素环保胶黏剂及其制备方法和应用,CN 202511619617.6 14. 全竹基热固性生物塑料及其制备方法和应用,CN 202510156164 .1 15. 一种竹材生物质全组分分离的方法,CN202510195068.8
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