教授

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陈文帅

发布日期:2015-07-26 作者:


    


陈文帅,博士、教授/ Prof. Wenshuai Chen

通讯地址:黑龙江省哈尔滨市和兴路51号新葡的京集团35222vip科技楼

Northeast Forestry University, Hexing Road 51th, Harbin 150040, China

邮件/ Email:chenwenshuai@nefu.edu.cn ;cwsnefu@163.com

研究方向Research Interests

木材物理学/ Wood Physics

纤维素纳米材料/ Cellulose-Based Nanomaterials

生物质纳米复合材料/ Bio-Based Nanocomposites

教育与工作经历Education and Professional Career

2018.01-     至今 : 教授,新葡的京集团35222vip

2015.09-2017.12  : 副教授,新葡的京集团35222vip

2013.07-2015.08 : 讲师,新葡的京集团35222vip

2008.09-2013.07 : 木材科学与技术,博士,新葡的京集团35222vip

2004.09-2008.08 : 木材科学与工程,学士,新葡的京集团35222vip

2018.01--- 至今 :Professor, Northeast Forestry University

2015.09-2017.12 :Associate Professor, Northeast Forestry University

2013.07-2015.08 :Lecture, Northeast Forestry University

2008.09-2013.07 :Ph. D., Wood Science and Technology, Northeast Forestry University

2004.09-2008.07 :B.S., Wood Science and Engineering, Northeast Forestry University

招贤纳士Recruit

欢迎具有木材科学及相关学科背景的本科生、研究生和博士后加入我们的团队!

We welcome graduate students and post-doc. who are enthusiastic about creating interesting in wood physics and bio-based nanomaterials to join our group!

期刊封面Cover Art

40AF6     D2006     

     45B56     F0C38

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代表性文章/ Representing articles

2024

105. Li, Q.; Chen, W.*

Irrigation Water Recycling in Greenhouses.

Nature Water. 2024, 2, 622–623.

104. Yan, X.; Xu, F.; Zhang, C.; Peng, H.; Huang, J.; Liu, F.; Lu, K.; Wang, R.; Shi, J.*; Li, N.*; Chen, W.*; Liu, M.*

Solar-powered mixed-linker metal–organic frameworks for water harvesting from arid air.

EcoMat. 2024, e12473.

103. Ren, Y.; Fu, Y.; Li, N.*; You, C.; Huang, J.; Huang, K.; Sun, Z.; Zhou, J.; Si, Y.; Zhu, Y.; Chen, W.; Duan, L.*; Liu, M.*

Concentrated solar CO2 reduction in H2O vapour with >1% energy conversion efficiency.

Nature Communications. 2024, 15, 4675.

102. Shan, H.; Poredoš, P.; Qu, H.; Yang, X.; Zhou, M.; Bai, L.; Shi, J.; Chen, W.; Wang, R.*; Tan, S.*

Integrating Rooftop Agriculture and Atmospheric Water Harvesting for Water-Food Production Based on Hygroscopic Manganese Complex.

Advanced Functional Materials. 2024, 2402839.

101. Shi, X.; Wang, Z.; Liu, S.; Xia, Q.; Liu, Y.; Chen, W.; Yu, H.*; Zhang, K.*

Scalable production of carboxylated cellulose nanofibres using a green and recyclable solvent.

Nature Sustainability. 2024, 7, 315–325.

100. Jiang, M.; Jing, C.; Lei, C.; Han, X.; Wu, Y.; Ling, S.; Zhang, Y.; Li, Q.; Yu, H.; Liu, S.; Li, J.; Chen, W.*; Yu, G.*

A bio-based nanofibre hydrogel filter for sustainable water purification.

Nature Sustainability. 2024, 10.1038/s41893-023-01264-9.

99. Xu, Q.; Li, Q.; Yu, H.; Li, J.; Chen, W.*

Nanocellulose Building Block for the Construction of Hygroscopic Aerogels.

Accounts of Materials Research. 2024. 10.1021/accountsmr.4c00085.

98. Li, Q.; Wang, F.; Zhang, Y.; Shi, M.; Zhang, Y.; Yu, H.; Liu, S.; Li, J.; Tan, S.*; Chen, W.*

Biopolymers for Hygroscopic Material Development.

Advanced Materials 2024, 36, 2209479.

97. Wildy, M.; Wei, W.; Xu, Kai.; Schossig, J.; Hu, X.; Hyun, D.; Chen, W.; Zhang, C.; Lu, P.*

Heat’s Role in Solution Electrospinning: A Novel Approach to Nanofiber Structure Optimization.

Langmuir. 2024,40(15), 7982-7991.

96. Shi, J.; Gao, G.; Jin, C.; Wu, H.; Wang, W.; An, Y.; Zhou, Z.; Huang, Z.*; Chen, W.*

Prussian blue analogs photocatalyst promote the evolution of value-added platform compounds via Co-CN-Zn covalent bonds.

EcoMat. 2024, e12441.

95. Zhou, H.; Yan, L.; Tang, D.; Xu, T.; Dai, L.*; Li, C.*; Chen, W.*; Si, C.*

Solar-driven Drum-type Atmospheric Water Harvester Based on Bio-based Gels with Fast

Adsorption/Desorption Kinetics.

Advanced Materials. 2024, 2403876

94. Zhu, P.; Yu, Z.; Sun, H.; Zheng, D.; Zheng, Y.; Qian, Y.; Wei, Y.; Lee, J.; Srebnik, S.; Chen, W.*; Chen, G.*; Jiang, F.*

3D Printed Cellulose Nanofiber Aerogel Scaffold with Hierarchical Porous Structures for Fast Solar-Driven Atmospheric Water Harvesting.

Advanced Materials. 2024, 36, 2306653.

93. Zhu, F.; Chen, X.*; Ge, Y.; Li, M.; Li, N.*; Zhou, J.*; Chen, W.*

Orthogonal Three-Wavelength-Controlled Two-Stage Supramolecular Self-Assemblies.

Advanced Functional Materials. 2024, 34, 2312155.

92. Li, Y.; Jiang, D.*; An, Y.; Chen, W.; Huang, Z.*; Jiang, B.*

Wearable flexible pressure sensors: An intriguing design towards microstructural functionalization.

Journal of Materials Chemistry A. 2024, 10.1039/D3TA05568J.

2023

91. Wang, B.; Fu, Y.; Zhang, C.; Huang, J.; Chen, W.; Guo, L.; Li, N.; Prezhdo, O.; Liu, M.*

Fermi Level Pinning in Concentrated Light-Induced Band Edge Tuning Maximizes Photocatalytic Solar-to-Hydrogen Efficiency.

The Journal of Physical Chemistry Letters. 2023, 14, 10825−10831.

90. Zhang, S.; Zhou, M.; Liu, M.; Guo, Z.; Qu, H.; Chen, W.*; Tan, S.*

Ambient-conditions Spinning of Functional Soft Fibers Via Engineering Molecular Chain Networks and Phase Separation.

Nature Communications 2023,14,3245 .

89. Pate1, D.; Wei, w.; Singh, H.; Xu, K.; Beck, C.; Wi1dy, M.; Schossig, J.; Hu,X.; Hyun, D.; Chen, W; Lu, P.*

Efficient and Secure Encapsulation of a Natural Phase Change Material in Nanofibers Using Coaxial Electrospinning for Sustainable Thermal Energy Storage.

ACS Sustainable Chem.Eng2023,11,11570-11579.

88. Cheng, W.; Zhu, Y.; Jiang, G.; Cao, K.; Chen, W.; Zhao, D.; Yu , H.*

Sustainable Cellulose and Its Derivatives for Promising Biomedical Applications.

Progress in Materials Science 2023,138 ,101152.

87. Wei, W.; Wildy, M.; Xu, K.; Schossig, J.; Hu, X.; Hyun, D.; Chen, W.; Zhang, C.; Lu, P.*

Advancing Nanofiber Research: Assessing Nonsolvent Contributions to Structure Using Coaxial Electrospinning.

Langmui 2023, 3c01038.

86. Liu, M.; Wang, N.; Cheng, M.; Zhu, F.; Qin, Y.; Zhou, J.*; Guan, J.; Ge, Y.; Zhu, H.; Chen, W.*; Li, N.*

Promotion of Photocatalytic Lignin Models Cβ–O Bond Cleavage by Cr-Doped Zinc Indium Sulfide in Alkaline Solvent.

The Journal of Physical Chemistry  2023 ,127 (25), 11997-12007.

85. Xu, L.; Ren, Y.; Fu, Y.; Liu, M.*; Zhu, F.; Cheng, M.; Zhou, J.*; Chen, W.; Wang, K.; Wang, N.; Li, N.*

Strong photo-thermal coupling effect boosts CO2 reduction into CH4 in a concentrated solar reactor.

Chemical Engineering Journal 2023, 143831.

84. Lu, D.; Ren, Y.; Yang, Y.*; Cheng, M.; Wang, K.; Wang, N.; Liu, M.*; Zhou, J.; Chen, W.*; Li, N.*

Boosted photocatalytic CO2 reduction by induced electromotive force in rotating magnetic field.

Nano Energy 2023, 108578.

83. Li, M.; Zhu, F.; Ge, Y.; Zhou, J.; Chen, X.*; Chen, W.*; Li, N.*

Vulcanized Layered Double Hydroxide Nanosheet Composite Hydrogels as Efficient Near-Infrared Light-Fueled Soft Actuators.

ACS Materials Letters 2023, 5, 1841−1850.

82. Zhu, Y.; Guo, Y.; Cao, K.; Zeng, S.; Jiang, G.; Liu, Y.; Cheng, W.; Bai, W.; Weng, X.; Chen, W.; Zhao,  D.*; Yu , H.*; Yu, G.*

A general strategy for synthesizing biomacromolecular ionogel membranes via solvent-induced self-assembly.

Nature Synthesis 2023, 10.1038/s44160-023-00315-5.

81. Zhu, J.; Dai, C.; Yang, H.; Shan, Y.; Ren, J.; Liu, Y.; Li, J.; Chen, W.*; Liang, J.*; Ling, S.*

IntelliSense Bio-Ionotronics Battery for Early Warning of Geological Seepage.

ACS Sensors 2023, 10.1021/acssensors.3c00579.

80. Bai, L.; Zhang, Y.; Guo, S.; Qu, H.; Yu, Z.; Yu, H.; Chen, W.*; Tan, S.*

Hygrothermic Wood Actuated Robotic Hand.

Advanced Materials 2023, 2211437.

79. Li, H.; Zhang, H.; Liu, W.; Huang, J.; Lu, K.; Shi, J.; Jin, H.; Chen, W.; Liu, M.*

Experimental Demonstration of Photocatalytic Hydrogen Production in Series with a Hydrogen Fuel Cell.

Journal of Chemical Education 2023, 100, 1404–1409.

78. Zhang, R.*; Hummelgård, M.; Örtegren, J.; Andersson, H.; Olsen, M.; Chen, W.; Wang, P.; Dahlström, C.; Eivazi, A.; Norgren, M.

Energy Harvesting Using Wastepaper-Based Triboelectric Nanogenerators.

Advanced Engineering Materials 2023, 2300107.

77. Mao, L.; Zhou, M.; Yao, L.; Yu, H.; Yan, X.; Shen, Y.; Chen, W.; Ma, P.; Ma, Y.*; Zhang, S.*; Tan, S.*

Crocodile Skin-Inspired Protective Composite Textiles with Pattern-Controllable Soft-Rigid Unified Structures.

Advanced Functional Materials. 2023, 10.1002/adfm.202213419.

76. Dai, C.; Wang, Y.; Shan, Y.; Ye, C.; Lv, Z.; Yang, S.; Cao, L.; Ren, J*.; Yu, H.; Liu, S.; Shao, Z.; Li, J.; Chen, W.*; Ling, S.*

Cytoskeleton-inspired hydrogel ionotronics for tactile perception and electroluminescent display in complex mechanical environments.

Materials Horizons. 2023, 10, 136–148, 10.1039/d2mh01034h.

75. Dai, C.; Ye, C.; Ren, J.; Yang, S.; Cao, L.*; Yu, H.; Liu, S.; Shao, Z.; LI, J.; Chen, W.*; Ling, S.*

Humanoid Ionotronic Skin for Smart Object Recognition and Sorting.

ACS Materials Lett. 2023, 5, doi.org/10.1021/acsmaterialslett.2c00783.

2022

74. Hu, Bi.; Zhang, H.; Li, S.; Chen, W.; Wu, Z.; Liang, H.; Yu, H.; Yu, S.*

Robust Carbonaceous Nanofiber Aerogels from All Biomass Precursors.

Advanced Functional Materials. 2022, 2207532.

73. Liu, F.; Xue, F.; Zhang, C.; Lu, K.; Chen, G.; Ye, X.; Chen, W.; Guo, L.; Liu. M.*

Noble-metal-free Chalcogenide Nanotwins for Efficient and Stable Photocatalytic Pure Water Splitting by Surface Phosphorization and Cocatalyst Modification.

Materials Today Energy 2022, 101180.

72. Cheng, W.; Liu, Y.; Tong, Z.; Zhu, Y.; Cao, K.; Chen, W.; Zhao, D.*; Yu, H.*

Micro-interfacial polymerization of porous PEDOT for printable electronic devices.

EcoMat 2022, e12288.

71. Wang, D.; Sheng, L.*; Jiang, M.; Jin, X.; Lin, X.; Lee, S-Y.; Shi, J.; Chen, W.*

Density and porosity optimization of graphene monoliths with high mass-loading for high-volumetric-capacitance electrodes.

Battery Energy 2022, 220017.

70Seo, J-Y.; Lee, Y-H.; Kim, J-H.; Hong, Y-K.; Chen, W.; Lee, Y-G.*; Lee, S-Y.*

Electrode-customized separator membranes based on self-assembled chiral nematic liquid crystalline cellulose nanocrystals as a natural material strategy for sustainable Li-metal batteries.

Energy Storage Materials 2022, 50, 783–791.

69. Shi, M.; Bai, L.; Wan, D.; Chang, Jin.; Li, Q.; Yu, H.; Liu, S.; Wei, T.*; Chen, W.*; Fan, Z.*

Transparent and Flexible Structurally Colored Biological Nanofiber Films for Visual Gas Detection.

Matter 2022, 05, 043.

68. Xu, S.; Zhao, H.; Li, Q.; Zhang, R.; Gao, S.; Wang, F.; Li, G.; Chen, B.; Yu, H.; Liu, S.; Li, J.; Chen, W.*; Yang, Y.*

Multi-dimensional, transparent and foldable cellulose-based triboelectric nanogenerator for touching password recognition.

Nano Energy 2022, 98, 107307.

67. Li, Q.; Yan, B.; Wang, D.; Yang, Q.; Huang, Z.; Fan, J.; Dai, M.; Chen, W.*; Zhi, C.*

Mechanistic Study of Interfacial Modification for Stable Zn Anode Based on a Thin Separator.

Small 2022, 18, 2201045.

66. Huang, Y.; Li, K.; Zhou, J.; Guan, J.; Zhu, F.; Wang, K.; Liu, M.*; Chen, W.; Li, N.*

Nitrogen-stabilized oxygen vacancies in TiO2 for site-selective loading of Pt and CoOx cocatalysts toward enhanced photoreduction of CO2 to CH4.

Chemical Engineering Journal 2022, 439, 135744.

65. Dai, M.; Zhao, F.; Fan, J.; Li, Q.; Yang, Y.; Fan, Z.; Ling, S.; Yu, H.; Liu, S.; Li, J.; Chen, W.*; Yu, G.*

A Nanostructured Moisture Absorbing Gel for Fast and Large-Scale Passive Dehumidification.

Advanced Materials 2022, 34, 2200865.

64. Tang, Z.; Zhu, F.; Zhou, J.; Chen, W.*; Wang, K.; Liu, M.*; Wang, N.; Li, N.*

Monolithic NF@ZnO/Au@ZIF-8 Photocatalyst with Strong Photo-Thermal-Magnetic Coupling and Selective-Breathing Effects for Boosted Conversion of CO2 to CH4.

Applied Catalysis B: Environmental 2022, 309, 121267.

63. Shi, M.; Liu, Z.*; Zhang, S.; Liang, S.; Jiang, Y.; Bai, H.; Jiang, Z.; Chang, J.; Feng, J.; Chen, W.; Yu, H.; Liu, S.; Wei, T.*; Fan, Z.*

A Mott–Schottky Heterogeneous Layer for Li–S Batteries:Enabling Both High Stability and Commercial-Sulfur Utilization.

Advanced Energy Materials 2022, 12, 2103657.

62. Chen, X.; Zhang, M.; Qin H.; Zhou, J.*; Shen, Q.; Wang, K.; Chen, W.*; Liu, M.; Li, N.*

Synergy effect between adsorption and heterogeneous photo-Fenton-like catalysis on LaFeO3/lignin-biochar composites for high efficiency degradation of ofloxacin under visible light.

Separation and Purification Technology 2022, 280, 119751.

2021

61. Bai, L.; Ma, J.; Song, H.; Yang, Y.; Zhi, C.; Lee, S-Y.; Yu, H.; Liu, S.; Li, J.; Yu, M.*; Chen, W.*

Flexible, Electrically Conductive, Nanostructured, Asymmetric Aerogel Films for Lithium−Sulfur Batteries.

ACS Applied Materials & Interfaces 2021, 13, 59174−59184.

60. Meng, J.; Liu, Y.; Xia, Q.; Liu, S.; Tong, Z.; Chen, W.; Liu, S.; Li, J.; Dou, S.*; Yu, H.*

High-Loading, Well-Dispersed Phosphorus Confined on Nanoporous Carbon Surfaces with Enhanced Catalytic Activity and Cyclic Stability.

Small Methods 2021, 5 (12), 2100964.

59. Wang, Y.; Dai, M.; Wu, H.; Xu, L.; Zhang, T.; Chen, W.*; Wang, Z.*; Yang, Y.*

Moisture induced electricity for self-powered microrobots.

Nano Energy 2021, 90, 106499.

58. Cao, L.; Liu, Q.; Ren, J.; Chen, W.*; Pei, Y.; Kaplan, D. L.*; Ling, S.*

Electro-Blown Spun Silk/Graphene Nanoionotronic Skin for Multifunctional Fire Protection and Alarm.

Advanced Materials 2021, 33, 2102500.

57. Zhu, Y.; Cao, K.; Cheng, W.; Zeng, S.; Dou, S.; Chen, W.; Zhao, D.*; Yu, H.*

A non-Newtonian fluidic cellulose-modified glass microfiber separator for flexible lithium-ion batteries.

EcoMat 2021, 3, e12126.

56. Ren, J.; Liu, Q.; Pei, Y.; Wang, Y.; Yang, S.; Lin, S.; Chen, W.*; Ling, S.*; Kaplan, D. L.*

Bioinspired Energy Storage and Harvesting Devices.

Advanced Materials Technology 2021, 6 (9), 2001301.

55. Li, N.*; Tu, Y.; Wang, K.; Huang, D.; Shen, Q.; Chen, W.*; Zhou, J.; Ma, Q.; Liu, M.*

Construction of a Photo-thermal-magnetic coupling reaction system for enhanced CO2 reduction to CH4.

Chemical Engineering Journal 2021, 421, 129940.

54. Fang, Y.; Jing, C.; Li, G.; Ling, S.; Wang, Z.; Lu, P.; Li, Q.; Dai, C.; Gao, S; Chen, B.; Bai, L.; Zhang, H.; Liu, T.; Wang, Q.; Li, J.; Yu, H.*; Liu, S.*; Chen, W.*

Wood-Derived Systems for Sustainable Oil/Water Separation.

Advanced Sustainable System 2021, 5 (7), 2100039.

53. Bai, L.; Li, Q.; Yang, Y.*; Ling, S.; Yu, H.; Liu, S.; Li, J.; Chen, W.*

Biopolymer Nanofibers for Nanogenerator Development.

Research 2021, 1843061.

52. Wang, M.; Sun, T.; Wan, D.; Dai, M.; Ling, S.; Wang, J.; Liu, Y.; Fang, Y.; Xu, S.; Yeo, J.; Yu, H.; Liu, S.; Wang, Q.; Li, J.; Yang, Y.*; Fan, Z.*; Chen, W.*

Solar-powered nanostructured biopolymer hygroscopic aerogels for atmospheric water harvesting.

Nano Energy 2021, 80, 105569.

2020

51Murray, S.; Wei, W.; Hart, R.; Fan, J.; Chen, W.; Lu, P.*

Solar Degradation of Toxic Colorants in Polluted Water by Thermally Tuned Ceria Nanocrystal-Based Nanofibers.

ACS Applied Nano Materials 2020, 3 (11), 11194-11202.

50. Ghaban, R.; Duong, J.; Patel, D.; Singh, H.; Chen, W.; Lu, P.*

Solvent-Assisted Nanochannel Encapsulation of a Natural Phase Change Material in Polystyrene Hollow Fibers for High-Performance Thermal Energy Storage.

ACS Applied Energy Materials 2020, 3 (10), 10089–10096.

49. Meng, J.; Liu, Y.; Shi, X.; Chen, W.; Zhang, X.*; Yu, H.*

Recyclable nanocellulose-confined palladium nanoparticles with enhanced room-temperature catalytic activity and chemoselectivity.

Science China Materials 2020, 2095-8226.

48. Wang, M.; Fang, Y.; Li, Q.; Bai, L.; Yu, H.; Liu, S.; Li, J.; Chen, W.*

Nanostructures of Plant Cell Walls and Individualization Methodology of Nanofibrillated Cellulose.

Acta Polymerica Sinica 2020, 51 (06), 586-597.

47Li, N.*; Liu, X.; Zhou, J.; Chen, W.*; Liu, M.*

Encapsulating CuO quantum dots in MIL-125(Ti) coupled with g-C3N4 for efficient photocatalytic CO2 reduction.

Chemical Engineering Journal 2020, 399, 125782.

46Chen, L.; Bai, L.; Yeo, J.; Wei, T.*; Chen, W.*; Fan, Z*.

Wood-Derived Carbon with Selectively Introduced C=O Groups toward Stable and High Capacity Anodes for Sodium Storage.

ACS Applied Materials & Interfaces 2020, 12 (24), 27499-27507.

45Li, N.; Liu, X.; Zhou, J.*; Ma, Q.; Liu, M.*; Chen, W.*

Enhanced Ni/W/Ti Catalyst Stability from Ti-O-W Linkage for Effective Conversion of Cellulose into Ethylene Glycol.

ACS Sustainable Chemistry & Engineering 2020, 8 (26), 9650-9659.

44Wang, Y.; Huang, W.; Wang, Y.; Mu, X.; Ling, S.; Yu, H.; Chen, W.; Guo, C.; Watson, M. C.; Yu, Y.; Black III, L. D.; Li, M.; Omenetto, F. G.; Li, C.*; Kaplan, D. L.*

Stimuli-responsive composite biopolymer actuators with selective spatial deformation behavior.

Proceedings of the National Academy of Sciences 2020, 117 (25), 14602-14608.

43Zhao, D.; Zhu, Y.; Cheng, W.; Chen, W.; Wu, Y. *; Yu, H.*

Cellulose-Based Flexible Functional Materials for Emerging Intelligent Electronics.

Advanced Materials 2020, 33 (28), 2000619.

2019

42. Kim, J.-H.; Lee, D.; Lee, Y.-H.; Chen, W.*; Lee, S.-Y.*

Nanocellulose for Energy Storage Systems: beyond the Limits of Synthetic Materials.

Advanced Materials 2019, 31, 1804826.

41. Li, X.; Liu, Y.; Yu, Y.; Chen, W.; Liu, Y.; Yu, H.*

Nanoformulations of quercetin and cellulose nanofibers as healthcare supplements with sustained antioxidant activity.

Carbohydrate Polymers 2019, 207, 160-168.

40. Ma, Y.; Lu, P.; Chen, W.; Zhang, Y.; Gu, J.*

Preparation of isocyanate microcapsules as functional crosslinking agent by minimalist interfacial polymerization.

Advanced Powder Technology 2019, 30 (10), 1995-2002.

39Ma, Y.; Xia, Q.; Liu, Y.; Chen, W.; Liu, S.; Wang, Q.; Liu, Y.; Li, J.; Yu, H.*

Production of Nanocellulose Using Hydrated Deep Eutectic Solvent Combined with Ultrasonic Treatment.

ACS Omega 2019, 4 (5), 8539-8547.

38Qi, J.; Xie, Y.; Liang, H.; Wang, Y.; Ge, T.; Song, Y.; Wang, M.; Li, Q.*; Yu, H.; Fan, Z.; Liu, S.; Wang, Q.; Liu, Y.; Li, J.; Lu, P.*; Chen, W.*

Lightweight, Flexible, Thermally-Stable, and Thermally-Insulating Aerogels Derived from Cotton Nanofibrillated Cellulose.

ACS Sustainable Chemistry & Engineering 2019, 7 (10), 9202-9210.

37Wang, Y.; Wang, J.; Ling, S.; Liang, H.; Dai, M.; Bai, L.; Li, Q.; Fan, Z.; Lee, S.-Y.; Yu, H.*; Liu, S.; Wang, Q.; Liu, Y.; Li, J.; Sun, T.*; Chen, W.*

Wood-Derived Nanofibrillated Cellulose Hydrogel Filters for Fast and Efficient Separation of Nanoparticles.

Advanced Sustainable Systems 2019, 3, 1900063.

36Yang, N.; Qi, P.; Ren, J.; Yu, H.; Liu, S.; Li, J.; Chen, W.*; Kaplan, D. L.*; Ling, S.*

Polyvinyl Alcohol/Silk Fibroin/Borax Hydrogel lonotronics: A Highly Stretchable, Self-Healable, and Biocompatible Sensing Platform.

ACS Applied Materials & Interfaces 2019, 11 (26), 23632-23638.

35Zhang, Q.; Chen, C.; Chen, W.; Pastel, G.; Guo, X.; Liu, S.; Wang, Q.; Liu, Y.; Li, J.; Yu, H.*; Hu, L.*

Nanocellulose-Enabled, All-Nanofiber, High-Performance Supercapacitor.

ACS Applied Materials & Interfaces 2019, 11 (6), 5919-5927.

2018

34. Li, S.; Hu, B.; Ding, Y.; Liang, H.*; Li, C.; Yu, Z.; Wu, Z.; Chen, W.; Yu, S.*

Wood-Derived Ultrathin Carbon Nanofiber Aerogels.

Angewandte Chemie International Edition 2018, 57 (24), 7085-7090.

33. Chen, B.; Yang, N.; Jiang, Q.; Chen, W.*; Yang, Y.*

Transparent triboelectric nanogenerator-induced high voltage pulsed electric field for a self-powered handheld printer.

Nano Energy 2018, 44, 468-475.

32Chen, C.*; Mo, M.; Chen, W.; Pan, M.; Xu, Z.; Wang, H.; Li, D.*

Highly conductive nanocomposites based on cellulose nanofiber networks via NaOH treatments.

Composites Science and Technology 2018, 156, 103-108.

31Chen, W.; Yu, H.; Lee, S.-Y.; Wei, T.; Li, J.; Fan, Z.*

Nanocellulose: a promising nanomaterial for advanced electrochemical energy storage.

Chemical Society Reviews 2018, 47 (8), 2837-2872.

30. Fan, J.; Ifuku, S.; Wang, M.; Uetani, K.; Liang, H.; Yu, H.; Song, Y.; Li, X.; Qi, J.; Zheng, Y.; Wang, H.; Shen, J.; Zhang, X.; Li, Q.; Liu, S.; Liu, Y.; Wang, Q.; Li, J.; Lu, P.*; Fan, Z.*; Chen, W.*

Robust Nanofibrillated Cellulose Hydro/Aerogels from Benign Solution/Solvent Exchange Treatment.

ACS Sustainable Chemistry & Engineering 2018, 6 (5), 6624-6634.

29Ling, S.*; Chen, W.; Fan, Y.; Zheng, K.; Jin, K.; Yu, H.; Buehler, M. J.*; Kaplan, D. L.*

Biopolymer nanofibrils: Structure, modeling, preparation, and applications.

Progress in Polymer Science 2018, 85, 1-56.

28Lu, P.*; Chen, W.; Fan, J.; Ghaban, R.; Zhu, M.

Thermally Triggered Nanocapillary Encapsulation of Lauric Acid in Polystyrene Hollow Fibers for Efficient Thermal Energy Storage.

ACS Sustainable Chemistry & Engineering 2018, 6 (2), 2656-2666.

27Xia, Q.; Liu, Y.; Meng, J.; Cheng, W.; Chen, W.; Liu, S.; Liu, Y.; Li, J.; Yu, H.*

Multiple hydrogen bond coordination in three-constituent deep eutectic solvents enhances lignin fractionation from biomass.

Green Chemistry 2018, 20 (12), 2711-2721.

2017

26Liu, Y.; Chen, W.; Xia, Q.; Guo, B.; Wang, Q.; Liu, S.; Liu, Y.; Li, J.; Yu, H.*  

Efficient Cleavage of Lignin-Carbohydrate Complexes and Ultrafast Extraction of Lignin Oligomers from Wood Biomass by Microwave-Assisted Treatment with Deep Eutectic Solvent.

ChemSusChem 2017, 10 (8), 1692-1700.

25Liu, Y.; Guo, B.; Xia, Q.; Meng, J.; Chen, W.; Liu, S.; Wang, Q.; Liu, Y.; Li, J.; Yu, H.*

Efficient Cleavage of Strong Hydrogen Bonds in Cotton by Deep Eutectic Solvents and Facile Fabrication of Cellulose Nanocrystals in High Yields.

ACS Sustainable Chemistry & Engineering 2017, 5 (9), 7623-7631.

24. Lu, P.*; Chen, W.; Zhu, M.; Murray, S.

Embedding Lauric Acid into Polystyrene Nanofibers To Make High-Capacity Membranes for Efficient Thermal Energy Storage.

ACS Sustainable Chemistry & Engineering 2017, 5 (8), 7249-7259.

23Rao, X.; Liu, Y.; Zhang, Q.; Chen, W.; Liu, Y.; Yu, H.*

Assembly of Organosolv Lignin Residues into Submicron Spheres: The Effects of Granulating in Ethanol/Water Mixtures and Homogenization.

ACS Omega 2017, 2 (6), 2858-2865.

22Wang, Y.; Uetani, K.; Liu, S.; Zhang, X.; Wang, Y.; Lu, P.; Wei, T.; Fan, Z.; Shen, J.; Yu, H.*; Li, S.; Zhang, Q.; Li, Q.; Fan, J.; Yang, N.; Wang, Q.; Liu, Y.; Cao, J.; Li, J.; Chen, W.*

Multifunctional Bionanocomposite Foams with a Chitosan Matrix Reinforced by Nanofibrillated Cellulose.

ChemNanoMat 2017, 3 (2), 98-108.

21Yu, X.; Bian, P.; Xue, Y.; Qian, X.; Yu, H.; Chen, W.; Hu, X.; Wang, P.; Wu, D.; Duan, Q.; Li, L.; Shen, J.*; Ni, Y.

Combination of microsized mineral particles and rosin as a basis for converting cellulosic fibers into "sticky" superhydrophobic paper.

Carbohydrate Polymers 2017, 174, 95-102.

20. Zhao, D.; Chen, C.; Zhang, Q.; Chen, W.; Liu, S.; Wang, Q.; Liu, Y.; Li, J.; Yu, H.*

High Performance, Flexible, Solid-State Supercapacitors Based on a Renewable and Biodegradable Mesoporous Cellulose Membrane.

Advanced Energy Materials 2017, 7, 1700739.

19Zhao, D.; Zhang, Q.; Chen, W.; Yi, X.; Liu, S.; Wang, Q.; Liu, Y.; Li, J.; Li, X.*; Yu, H.*  

Highly Flexible and Conductive Cellulose-Mediated PEDOT:PSS/MWCNT Composite Films for Supercapacitor Electrodes.

ACS Applied Materials & Interfaces 2017, 9 (15), 13213-13222.

2016

18Chen, W.; Zhang, Q.; Uetani, K.; Li, Q.; Lu, P.; Cao, J.; Wang, Q.; Liu, Y.; Li, J.; Quan, Z.; Zhang, Y.; Wang, S.; Meng, Z.; Yu, H.*

Sustainable Carbon Aerogels Derived from Nanofibrillated Cellulose as High-Performance Absorption Materials.

Advanced Materials Interfaces 2016, 3, 1600004.

17Li, Q.; Chen, W.; Li, Y.; Guo, X.; Song, S.; Wang, Q.; Liu, Y.; Li, J.; Yu, H.*; Zeng, J.

Comparative study of the structure, mechanical and thermomechanical properties of cellulose nanopapers with different thickness.

Cellulose 2016, 23 (2), 1375-1382.

16Li, Y.; Liu, Y.; Chen, W.; Wang, Q.; Liu, Y.; Li, J.; Yu, H.*

Facile extraction of cellulose nanocrystals from wood using ethanol and peroxide solvothermal pretreatment followed by ultrasonic nanofibrillation.

Green Chemistry 2016, 18 (4), 1010-1018.

15Tan, Y.; Liu, Y.; Chen, W.; Liu, Y.; Wang, Q.; Li, J.; Yu, H.*

Homogeneous Dispersion of Cellulose Nanofibers in Waterborne Acrylic Coatings with Improved Properties and Unreduced Transparency.

ACS Sustainable Chemistry & Engineering 2016, 4 (7), 3766-3772.

2015

14Chen, W.; Li, Q.; Cao, J.; Liu, Y.; Li, J.; Zhang, J.; Luo, S.; Yu, H.*

Revealing the structures of cellulose nanofiber bundles obtained by mechanical nanofibrillation via TEM observation.

Carbohydrate Polymers 2015, 117, 950-956.

13Sun, L.; Chen, W.; Liu, Y.; Li, J.; Yu, H.*

Soy protein isolate/cellulose nanofiber complex gels as fat substitutes: rheological and textural properties and extent of cream imitation.

Cellulose 2015, 22 (4), 2619-2627.

2014

12. Bian, P.; Dai, Y.; Qian, X.; Chen, W.; Yu, H.*; Li, J.; Shen, J.*

A process of converting cellulosic fibers to a superhydrophobic fiber product by internal and surface applications of calcium carbonate in combination with bio-wax post-treatment.

RSC Advances 2014, 4 (95), 52680-52685.

11Chen, W.; Abe, K.; Uetani, K.; Yu, H.; Liu, Y.; Yano, H.*

Individual cotton cellulose nanofibers: pretreatment and fibrillation technique.

Cellulose 2014, 21 (3), 1517-1528.

10. Chen, W.; Li, Q.; Wang, Y.; Yi, X.; Zeng, J.*; Yu, H.*; Liu, Y.; Li, J.

Comparative Study of Aerogels Obtained from Differently Prepared Nanocellulose Fibers.

ChemSusChem 2014, 7 (1), 154-161.

9. Gao, J.; Li, Q.; Chen, W.; Liu, Y.; Yu, H.*

Self-Assembly of Nanocellulose and Indomethacin into Hierarchically Ordered Structures with High Encapsulation Efficiency for Sustained Release Applications.

ChemPlusChem 2014, 79 (5), 725-731.

8. Lu, T.; Li, Q.; Chen, W.; Yu, H.*

Composite aerogels based on dialdehyde nanocellulose and collagen for potential applications as wound dressing and tissue engineering scaffold.

Composites Science and Technology 2014, 94, 132-138.

7Yu, H.*; Chen, P.; Chen, W.*; Liu, Y.

Effect of cellulose nanofibers on induced polymerization of aniline and formation of nanostructured conducting composite.

Cellulose 2014, 21 (3), 1757-1767.

2010-2013

6Chen, P.; Yu, H.*; Liu, Y.; Chen, W.; Wang, X.; Ouyang, M.

Concentration effects on the isolation and dynamic rheological behavior of cellulose nanofibers via ultrasonic processing.

Cellulose 2013, 20 (1), 149-157.

5. Chen, W.; Yu, H.*; Li, Q.; Liu, Y.; Li, J.

Ultralight and highly flexible aerogels with long cellulose I nanofibers.

Soft Matter 2011, 7 (21), 10360-10368.

4. Chen, W.; Yu, H.*; Liu, Y.

Preparation of millimeter-long cellulose I nanofibers with diameters of 30-80 nm from bamboo fibers.

Carbohydrate Polymers 2011, 86 (2), 453-461.

3Chen, W.; Yu, H.*; Liu, Y.; Chen, P.; Zhang, M.; Hai, Y.

Individualization of cellulose nanofibers from wood using high-intensity ultrasonication combined with chemical pretreatments.

Carbohydrate Polymers 2011, 83 (4), 1804-1811.

2. Chen, W.; Yu, H.*; Liu, Y.; Hai, Y.; Zhang, M.; Chen, P.

Isolation and characterization of cellulose nanofibers from four plant cellulose fibers using a chemical-ultrasonic process.

Cellulose 2011, 18 (2), 433-442.

1Chen, W.; Yu, H.*; Liu, Y.; Jiang, N.; Chen, P.

A method for isolating cellulose nanofibrils from wood and their morphological characteristics.

Acta Polymerica Sinica 2010, (11), 1320-1326.


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