(3)代表性论文 [1] Yaoyang Liu, Qian Zhao*, Weijian Du, Yan Sun, Yu Liu, Weikun Jiang*. A robust oxygenterminated MXene interlayer with synergistic adsorption- catalysis effect to polysulfides for efficient Li-S batteries, Chinese Chemical Letters, 2026, 37, 112608.(中科院一区Top,IF=8.9) [2] Hui Liu, Weikun Jiang*, Wenliang Wang*, Shubin Wu, Pedram Fatehi, Yu Liu*. Lignin-derived soft templates for the green synthesis of hollow phenolic resin nanocages and their multifunctional applications. Chemical Engineering Journal, 2026, 532, 174434.(中科院一区Top,IF=13.2) [3]刘慧, 吴辰, 陆志文, 王观亚, 刘苇, 姜炜坤*. 木质素调控极小尺寸树脂纳米球的制备及其纳米增强作用研究. 中国造纸, 2026, 45(02): 97-104. [4] Chen Wu1, Mengyao Xia1, Weikun Jiang*, Hui Liu, Shiwei Liu, Gaojin Lyu*, Shubin Wu, Yonghao Ni, Yu Liu*. Hollow-structured resin nanoreactor with high-loading of Ag nanoparticles and void-confinement effect for efficient catalytic hydrogenation. Composites Part B: Engineering, 2025, 296, 112267.(中科院一区Top,IF=14.2) [5]Yu Yang, Weikun Jiang*, Honglei Chen, Fangong Kong, Shubin Wu, Yonghao Ni, Yu Liu*. A novel strategy for preparing gradient hydrogels based on density difference-driven bidirectional self-growth. Chemical Engineering Journal, 2025, 511, 161936.(中科院一区Top,IF=13.4) [6] Weikang Ling, Jiliang Ma*, Weikun Jiang*, Huanqiu Wei, Yuchen Ren, Min Hong, Lingzhao Kong, Runcang Sun*. Interfacial engineering of Co(OH)2@CN composites: a study of p-n heterojunctions with enhanced xylose/xylan photoreforming and CO2 reduction performance. Journal of Colloid and Interface Science, 2025, 682, 814-824.(中科院一区Top,IF=9.4) [7] Chenglong Bi, Weikun Jiang*, Wenliang Wang, Shubin Wu, Yu Liu*. A high-performance pressure sensor enabled by a sodium alginate bilayer hydrogel via tailored unit ring-opening. International Journal of Biological Macromolecules,2025, 335, 149152.(中科院二区Top,IF=8.5) [8]刘国龙, 毕成龙, 刘慧, 杨宇, 王超, 刘玉, 姜炜坤*. 导电水凝胶的制备及其应用研究进展.现代化工,2025, 02, 27-31. [9] Mengyao Xia1, Chen Wu1, Weikun Jiang*, Jiankang Liu, Chao Wang, Shiwei Liu, Chang Geun Yoo, Yu Liu*, Gaojin Lyu*.The preparation of resin-based carbon nanospheres with a hollow/curved structure and their application as supercapacitor electrodes.Journal of Power Sources,2025, 633, 236371.(中科院二区Top,IF=8.1) [10] 毕成龙, 刘慧, 刘国龙, 王超, 邵鲁鹏, 李仁燕, 王观亚, 姜炜坤*. 空心硬胶囊壳的制备方法及性能研究进展. 大连工业大学学报, 2025, 44(03): 190-197. [11] Yang Wang, Weikun Jiang*, Yu Yang, Chao Wang, Dawei Zhao, Xingxiang Ji, Yu Liu, Guihua Yang, Jiachuan Chen, Yonghao Ni*, Gaojin Lyu*. Ternary systems engineered conductive hydrogel with extraordinary strength, environmental adaptability and excellent electrochemical performances for flexible power supply devices. Energy Storage Materials, 2024, 70, 103483.(中科院一区Top,IF=20.4) [12] Chen Wu, Weikun Jiang*, Mengyao Xia, Hui Liu, Tao Zhang*, Jiliang Ma*, Yu Liu. Green preparation of versatile silver-based nanocomposites using whole biomass-based tannin-furfural as raw materials. Chemical Engineering Journal, 2024, 489, 151407.(中科院一区Top,IF=15.1) [13] Yishuai Fu, Wenliang Wang*, Hui Miao, Yangyi Cui, Yutong Chen, Ziwei Wang, Guowei Xiao, Bailiang Xue*, Weikun Jiang*. Exploration of microwave absorptivity and catalysis of CMF@Co-MoS2 for microwave-initiated depolymerization of lignin.Chemical Engineering Journal, 2024, 501, 157591.(中科院一区Top,IF=13.3) [14] Zhendong Liu, Aohua Li, Jiliang Ma*, Weikun Jiang*, Runcang Sun*. In-situ carbon-doped poly(triazine imide) modified with silver nanoparticles for synergistic efficient photocatalytic CO2 reduction coupled with biomass refining. Chemical Engineering Journal,2024, 489, 155361.(中科院一区Top,IF=13.3) [15] Yu Yang, Weikun Jiang*, Yang Wang, Chen Wu, Honglei Chen, Gaojin Lyu, Jiliang Ma, Yonghao Ni*, Yu Liu*. Preparation of strong and tough conductive hydrogel based on grafting, Fe3+-catechol complexations and salting out for triboelectric nanogenerators. Journal of Colloid and Interface Science, 2024, 661, 450-459.(中科院一区Top,IF=9.9) [16] Xinze Li, Jiliang Ma*, Weikun Jiang*, Rui Cui, Zhendong Liu, Junqiang Zhang, Runcang Sun*. Fabricating a CNIS@SL S scheme heterojunction with spatial charge separation for boosting photocatalytic biomass reforming. ACS Sustainable Chemistry Engineering, 2024, 12, 14810-14820.(中科院一区Top,IF=7.1) [17]Wenliang Wang*, Yishuai Fu, Yutong Chen, Hui Miao, Hui Zheng, Jiawen Pan, Ziwei Wang, Yuchen Liu, Weikun Jiang*.Microwave depolymerization of lignin via dynamic vapor flow reaction system: HCOOH as pretreatment solvent or reforming solvent vapor. ChemSusChem, 2024, e202400151.(中科院二区Top,IF=8.4) [18]Shunli Li, Weikun Jiang*, Huimei Wang, Jiliang Ma, Jinghui Zhou, Yu Liu. Integrated preparation of functional lignin nanoparticles and levulinic acid directly from the pre-hydrolysis liquor of poplar wood. International Journal of Biological Macromolecules, 2024, 265, 130906.(中科院二区Top,IF=8.5) [19]Qi Wang, Huimei Wang*, Honglei Chen, Zhengxiang Meng, Fangong Kong, Yu Liu*, Weikun Jiang*. Efficient synthesis of highly hydrophobic lignin nanoparticles and their application as nano fillers for multifunctional composite membranes. International Journal of Biological Macromolecules, 2024, 282, 136869.(中科院二区Top,IF=8.5) [20]Yu Yang, Han Cui, Weikun Jiang*, Wenliang Wang, Chao Wang, Gaojin Lyu*. High-density, reversible of hydrogen-bonding and Fe3+ ion bridging enable the fabrication of multifunctional PVA-based composites. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 703, 135359.(中科院二区Top,IF=5.4) [21] 刘慧, 刘国龙, 毕成龙, 吴辰, 王超, 刘玉, 姜炜坤*. 木质素基水凝胶的制备及其潜在应用研究进展. 中国造纸, 2024, 11, 26-36. [22] Wenliang Wang*, Jiale Huang, Yishuai Fu, Weikun Jiang*, Yutong Chen, Yujun Ma, Sizhe Han. A 3D porous Fe-MoS2/CMF catalyst for high-efficient catalytic reforming of lignin vapor by microwave irradiation. Applied Catalysis B: Environment and Energy, 2023, 333, 122787.(中科院一区Top,IF=24.3) [23] Yang Wang, Weikun Jiang*, Jiao Li, Md Sohel Ahommed, Chao Wang, Xingxiang Ji, Yu Liu, Guihua Yang, Yonghao Ni*, Gaojin Lyu*. Zinc-ion engineered plant-based multifunctional hydrogels for flexible wearable strain sensors, bio-electrodes and zinc-ion hybrid capacitors. Chemical Engineering Journal, 2023, 465, 142917.(中科院一区Top,IF=16.7,高被引论文) [24] Shuo Zhang, Weikun Jiang*, Guolong Liu, Shiwei Liu, Honglei Chen, Gaojin Lyu, Guihua Yang, Yu Liu*, Yonghao Ni*. Preparation of ultrafine and highly loaded silver nanoparticle composites and their highly efficient applications as reductive catalysts and antibacterial agents. Journal of Colloid and Interface Science, 2023, 629, 766-777.(中科院一区Top,IF=9.9) [25] Shuo Zhang, Weikun Jiang*, Mengyao Xia, Chen Wu, Honglei Chen, Guihua Yang, Yu Liu*, Yonghao Ni*. Fabrication of tannin-based hydroxyl-rich, uniform and size-controllable nanospheres as carriers for silver nanoparticles. Industrial Crops and Products, 2023, 194, 116393.(中科院一区Top,IF=6.4) [26] Mengyao Xia, Weikun Jiang*, Chen Wu, Chao Wang, Chang Geun Yoo, Yu Liu*, Gaojin Lyu*, Tannin-assisted synthesis of nanocomposites loaded with silver nanoparticles and their multifunctional applications. Biomacromolecules, 2023, 24, 5194-5206.(中科院一区Top,IF=6.2) [27] 杨宇, 王洋, 刘国龙, 吴辰, 刘玉, 姜炜坤*. 导电水凝胶基摩擦纳米发电机的性能优化与应用研究进展. 中国造纸, 2023, 05, 22-36. [28] 吴辰, 刘国龙, 马占松, 杨宇, 刘玉, 姜炜坤*. 用于CO氧化的Au催化剂载体研究进展. 现代化工, 2023,43, 11-16. [29] 王洋, 吕高金, 夏梦瑶, 王超, 庄文平, 姜炜坤*. 生物质基水凝胶功能材料的研究进展. 中国造纸, 2023, 04, 123-131. [30] Yang Zhang, Jincheng Mao*, Weikun Jiang*, Shuo Zhang, Li Tong, Jinhua Mao, Guo Wei, Ming Zuo, Yonghao Ni*. Lignin sulfonate induced ultrafast polymerization of double network hydrogels with anti-freezing, high strength and conductivity and their sensing applications at extremely cold conditions. Composites Part B: Engineering, 2021, 217, 108879.(中科院一区Top,IF=11.3) [31] Han Cui, Weikun Jiang*, Chao Wang, Xingxiang Ji, Yu Liu, Guihua Yang, Jiachuan Chen, Gaojin Lyu*, Yonghao Ni*. Lignin nanofiller-reinforced composites hydrogels with long-lasting adhesiveness, toughness, excellent self-healing, conducting, ultraviolet-blocking and antibacterial properties, Composites Part B: Engineering, 2021, 225, 109316.(中科院一区Top,IF=11.3) [32]Shuyun Liu, Weikun Jiang*, Bo Jin, Yu Liu*, Lucian A. Lucia. Representative model compounds for understanding the pyrolytic behavior of pre-oxidized β-ether-type lignin. BioResources, 2021, 15, 6989.(中科院四区Top,IF=1.7) [33] Weikun Jiang*, Shuyun Liu, Chaojun Wu, Yu Liu, Guihua Yang, Yonghao Ni*. Super-stable, solvent-resistant and uniform lignin nanorods and nanospheres with a high yield in a mild and facile process. Green Chemistry, 2020, 22, 8734.(中科院一区Top,IF=11.0) (4)申请授权专利 [1] 姜炜坤, 刘淑云, 邵鲁鹏, 吕高金, 刘玉. 一种木质素磺酸盐纳米球纳米棒的制备方法, 2022-5-27至2032-5-27, 中国, ZL202010749105.2. [2] 姜炜坤, 张硕, 刘淑云, 陈洪雷, 刘玉. 一种调节木质素磺酸盐纳米棒尺寸的方法, 2022-6-7至2032-6-7, 中国, ZL202011597833.2. [3] 姜炜坤, 夏梦瑶, 吕高金, 刘玉. 一种利用单宁酸包覆酚醛树脂微球与聚乙烯醇复合制备高强度多功能复合膜材料的方法, 2022-9-8, 中国, 202211164580.9. [4] 姜炜坤, 刘淑云, 杨梦茹, 刘玉, 陈洪雷, 吕高金. 适用于作为多道生理记录处理系统水凝胶电极膜片及方法, 2022-10-18至2032-10-18, 中国, ZL20201 1625534.5. [5] 姜炜坤, 张硕, 刘玉, 刘国龙, 陈洪雷. 利用单宁酸涂层辅助酚醛树脂微球表面原位还原形成超小尺寸和高密度纳米银粒子的方法, 2022-10-25至2032-10-25, 中国, ZL202111086873.5. [6] 姜炜坤, 刘玉, 吕高金, 陈洪雷. 一种酚化木质素-酚醛树脂纳米球的制备方法及其应用, 2023-3-17至2033-03-17, 中国, ZL202011582210.8. [7]姜炜坤,杨宇,刘国龙,陈洪雷,刘玉. 一种高强韧导电水凝胶及其制备方法与其在水凝胶摩擦纳米发电机中的应用, 2023-12-19, 中国, ZL202311764388.8. [8] 姜炜坤,夏梦瑶, 董文通, 吴辰, 刘玉. 一种具有多级孔结构的N掺杂的超级电容器碳电极材料的制备方法, 2023-12-25, 中国, ZL202311803505.7. [9] 姜炜坤, 张硕, 刘玉, 刘国龙, 陈洪雷. METHOD FOR IN SITU SYNTHESIZING ULTRAFINE AND HIGHLY LOADED AG NPS ON THE SURFACE OF TANNIN-COATED PHENOLIC RESIN MICROSPHERES, 2024-2-15, 美国, US-2024-0051021-A1. [10] 姜炜坤,吴辰,刘慧,吕高金,陈洪雷,刘玉. 单宁酸包覆中空酚醛树脂载银纳米球及其制备方法和应用, 2024-04-22,中国, ZL202410486476.4. [11] 姜炜坤, 毕成龙, 陈洪雷, 刘玉. 一种海藻酸钠基梯度水凝胶传感器的制备方法, 2025-4-22至2035-4-22, 中国, ZL202510037858.3. [12]姜炜坤, 张硕, 刘玉. 一种调控儿茶酚基树脂微纳米球形貌及尺寸的方法, 2025-4-29至2035-4-29, 中国, ZL202211214028.6. [13]姜炜坤, 刘慧, 陈洪雷, 刘玉. 一种基于木质素模板法制备多孔树脂微纳米材料的方法,2025-5-27至2035-5-27, 中国, ZL202510033162.3. [14] 姜炜坤, 杨宇, 陈洪雷, 吕高金, 刘玉.一种梯度水凝胶及其密度差驱动双向自生长制备方法, 2025-6-20至2035-6-20, 中国, ZL202510220382.7. [15] 姜炜坤, 吴辰, 刘玉. 一种全生物基组分(单宁酸-糠醛)树脂微纳米球的制备方法, 2025-10-24至2035-10-24, 中国, ZL202310698900.7. [16]姜炜坤, 刘国龙, 陈洪雷, 刘玉. 一种具有温度响应性水凝胶基伤口敷料材料的制备方法, 2025-11-4至2035-11-4, 中国, ZL202510024785.4. [17]姜炜坤, 张硕, 孔岳, 吴辰, 刘玉. 能够负载银纳米颗粒的表面具有荔枝状凹凸结构的儿茶酚-糠醛基树脂纳米球的制备方法, 2026-1-6至2036-1-6, 中国, ZL202310777757.0. (5)代表性学术报告 [1] 生物基微纳米材料的构筑及其应用. 中国化学会第四届全国纤维素与生物质化学会议, 2025, 中国˙广州(Oral Presentation Prize) [2] 生物质基树脂微纳米材料的可控构筑. 纳米纤维素材料国际会议, 2025, 中国˙福州(邀请报告) [3]全国木质素科学与技术研讨会暨生物质化工发展论坛, 2025, 中国˙广州(青年报告) [4] 生物基树脂微纳米材料的可控构筑. 第三届纳米材料与技术大会, 2025, 中国˙青岛(邀请报告) [5] 第五届木质素和胶原材料青年国际会议, 2025, 中国˙大连.(邀请报告) [6] 国际能源环境与先进材料研讨会, 2025, 中国˙长沙.(口头报告) [7] 生物基树脂微纳米材料的可控构筑及其在催化、功能材料领域的应用. 第五届钒钛资源与储能科技大会, 2024, 中国˙苏州.(邀请报告) [8] The preparation of bio-based resin nanomaterials and its applications. International symposium on biorefining, papermaking, and lignocellulosic materials, 2024, 中国˙济南.(口头报告) [9] 木质素基树脂微纳米材料的构筑及其应用. 第四届全国木质素科学与技术学术研讨会暨第一届中国-东盟生物质转化与利用论坛, 2024, 中国˙大连.(口头报告) [10] 木质素基树脂微纳米材料的构筑及其应用. 第二届中国木质素资源与开发利用学术论坛. 2024, 中国˙桂林.(邀请报告) [11] 木质素基树脂微纳米材料的可控构筑及其应用研究. 先进纳米材料制备与应用技术交流会, 2024, 中国˙淄博.(邀请报告) [12] Green preparation of bio-based functional materials. International paper physics conference, 2023, 中国˙广州.(口头报告) [13] 植物基组分助力功能材料的制备及其功能化应用. 海峡循环经济学术论坛会议, 2023, 中国˙莆田.(口头报告) [14] 生物基酚醛树脂载银微纳米球的构建及其应用. 中国化学会第三届全国纤维素学术研讨会. 2023, 中国˙贵阳.(口头报告) [15] Bio-based material and green paper-making. ACS spring bonding through chemistry. 2022.(线上报告) |