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Carbohydrate Polymers|September 8, 2024
Cellulose-based fluorescent chemosensor with controllable sensitivity for Fe3+ detectionChangjing Qiu, Hongchen Liu, Xijun Wang, et al.Biomacromolecules|April 19, 2019
Highly Stretchable and Compressible Cellulose Ionic Hydrogels for Flexible Strain SensorsRuiping Tong, Guangxue Chen, Danhong Pan, et al.Carbohydrate Polymers|January 3, 2024
Multifunctioning of carboxylic-cellulose nanocrystals on the reinforcement of compressive strength and conductivity for acrylic-based hydrogelJintang Luo, Tao Song, Tingting Han, et al.Carbohydrate Polymers|May 13, 2022
Facile preparation of lignin-containing cellulose nanofibrils from sugarcane bagasse by mild soda-oxygen pulpingLu Yao, Songnan Hu, Xijun Wang, et al.Carbohydrate Polymers|June 14, 2022
Holocellulose nanofibrils assisted exfoliation of boron nitride nanosheets for thermal management nanocomposite filmsCunzhi Zhang, Ming Wang, Xuejiao Lin, et al.ACS Applied Materials & Interfaces|May 28, 2020
Cellulose Nanofiber-Reinforced Ionic Conductors for Multifunctional Sensors and DevicesMing Wang, Renai Li, Xiao Feng, et al.Nano Letters|April 1, 2022
Tough, Highly Oriented, Super Thermal Insulating Regenerated All-Cellulose Sponge-Aerogel Fibers Integrating a Graded Aligned NanostructureQihua Li, Zhanhong Yuan, Chi Zhang, et al.ACS Applied Materials & Interfaces|November 25, 2020
Eco-Friendly Bioinspired Interface Design for High-Performance Cellulose Nanofibril/Carbon Nanotube NanocompositesCunzhi Zhang, Guixian Chen, Xijun Wang, et al.ACS Applied Materials & Interfaces|March 28, 2019
Highly Stretchable, Transparent, and Conductive Wood Fabricated by in Situ Photopolymerization with Polymerizable Deep Eutectic SolventsMing Wang, Renai Li, Guixian Chen, et al.Nature Communications|August 13, 2025
Cellulose hydrogel with in-situ confined nanopores for boosting moist-electric conversionXuejiao Lin, Shenming Tao, Jilong Mo, et al.Pageof 7