论文
以第一/通讯作者在Progress in Materials Science、Advanced Materials、Coordination Chemistry Reviews等国际权威SCI期刊发表论文90余篇,他引4200余次,7篇论文入选ESI前1%高被引论文,单篇最高被引400余次,代表性论文如下:
1. MC Li*, X Liu, K Lv, J Sun*, C Dai, B Liao, C Liu, C Mei, Q Wu, M Hubbe. Cellulose nanomaterials in oil and gas industry: Current status and future perspectives, Progress in Materials Science, 139,101187, 2023. (中科院一区,影响因子:37.4)
2. MC Li*, Q Wu*, RJ Moon, MA Hubbe, MJ Bortner. Rheological Aspects of Cellulose Nanomaterials: Governing Parameters and Emerging Applications. Advanced Materials, 33, 2006052, 2021. (中科院一区,影响因子:32.086)
3. Y Lu, C Liu, C Mei, J Sun, J Lee, Q Wu, MA Hubbe, MC Li*. Recent advances in metal organic framework and cellulose nanomaterial composites, Coordination Chemistry Reviews, 461, 214496, 2022. (中科院一区,影响因子:24.833)
4. Z Li, C Liu, S Hong, H Lian, C Mei, J Lee, Q Wu, MA Hubbe, MC Li*.Recent advances in extraction and processing of chitin using deep eutetic solvents. Chemical Engineering Journal, 446, 136953, 2022. (中科院一区,影响因子:16.744)
5. G Zhou, MC Li*, C Liu, Q Wu, C Mei*. 3D Printed Ti3C2Tx MXene/Cellulose Nanofiber Architectures for Solid-State Supercapacitors: Ink Rheology, 3D Printability and Electrochemical Performance, Advanced Functional Materials, 32, 2109593, 2022. (中科院一区,影响因子:19.924)
6. G Zhou, X Wang, T Wan, C Liu, W Chen, S Jiang, J Han, Y Yan, MC Li*, C Mei*. Electrostatic Self-assembly of Ti3C2Tx MXene/Cellulose Nanofiber Composite Films for Wearable Supercapacitor and Joule Heater. Energy & Environmental Materials, 2022, DOI:10.1111/eem2.12454. (中科院一区,影响因子:15)
7. G Zhou, MC Li*, Faming Wang*, C Liu, C Mei*. 3D printing of cellulose nanofiber monoliths for thermal insulation and energy storage applications. Additive Manufacturing, 59, 103124, 2022. (中科院一区,影响因子:11.632)
8. C Liu, Z Li, MC Li*, W Chen, W Xu, S Hong, Q Wu*, C Mei*. Lignin-containing cellulose nanofibers made with microwave-aid green solvent treatment for magnetic fluid stabilization, Carbohydrate Polymers, 291, 119573, 2022. (中科院一区,影响因子:11.632)
9. C Liu, G Zhou, Z Li, MC Li*, X Liu, M Koo, Q Wu*, C Mei*. Lignin-containing cellulose nanomaterials produced by microwave-assisted deep eutectic solvent treatment as rheology modifiers for fracturing fluids. Industrial Crops and Products, 187, 115402, 2022. (中科院一区,影响因子:11.2)
10. C Liu, W Xu*, C Mei*, MC Li, W Chen, S Hong, WY Kim, SY Lee, Q Wu*. A Chemically Self‐Charging Flexible Solid‐State Zinc‐Ion Battery Based on VO2 Cathode and Polyacrylamide–Chitin Nanofiber Hydrogel Electrolyte. Advanced Energy Materials, 2003902, 2021. (中科院一区,影响因子:29.368)
11. X Yang, SK Biswas*, J Han*, S Tanpichai, MC Li, C Chen, S Zhu, AK Das, H Yano*. Surface and Interface Engineering for Nanocellulosic Advanced Materials. Advanced Materials, 2002264, 2020. (中科院一区,影响因子:32.086)
12. MC Li, Q Wu*, J Han, C Mei, T Lei, SY Lee, J Gwon. Overcoming Salt Contamination of Bentonite Water-based Drilling Fluids with Blended Dual-Functionalized Cellulose Nanocrystals. ACS Sustainable Chemistry & Engineering, 8, 31,11569-11578, 2020. (中科院一区,影响因子:8.4)
13. MC Li, Q Wu*, K Song, AD French, C Mei, T Lei. pH-Responsive Water-Based Drilling Fluids Containing Bentonite and Chitin Nanocrystals. ACS Sustainable Chemistry & Engineering, 6, 3783–3795, 2018. (中科院一区,影响因子:8.4)
14. MC Li, Q Wu*, K. Song, HN Cheng, S. Suzuki, T Lei. Chitin nanofibers as reinforcing and antimicrobial agents in carboxymethyl cellulose films: influence of partial deacetylation. ACS Sustainable Chemistry & Engineering, 4, 4385-4395, 2016. (中科院一区,影响因子:8.4)
15. MC Li, Q Wu*, K Song, SY Lee, C Jin, S Ren, and T Lei*. Soy Protein Isolate As Fluid Loss Additive in Bentonite–Water-Based Drilling Fluids. ACS Applied Materials & Interfaces, 7, 24799-24809, 2015. (中科院一区,影响因子:9.5)
16. MC Li, Q Wu*, K Song, Y Qing, and Y Wu*. Cellulose Nanoparticles: Structure-Morphology-Rheology Relationships. ACS Sustainable Chemistry & Engineering, 3, 821-832, 2015. (中科院一区,影响因子:8.4)
17. MC Li, Q Wu*, K Song, SY Lee, Y Qing, and Y Wu*. Cellulose Nanoparticles as Modifiers for Rheology and Fluid Loss in Bentonite Water-based Fluids. ACS Applied Materials & Interfaces, 7, 5006-5016, 2015. (中科院一区,影响因子:9.5)