Carbon nanotubes/cellulose composite aerogels with controllable microstructure for electromagnetic interference shielding
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F. Zhou | Longgui Peng | Ying Li | Liang Zhang | Qing-Wei Shi | Mengjie Chang | Changdan Gong | Yi Wu
[1] Fang Wang,et al. Synergistic effect of 2D TiC and 1D CNT towards high-performance electromagnetic interference shielding with absorption-dominant in 3D macroporous carbon aerogel , 2022, Carbon.
[2] P. Ren,et al. Three-dimensional macroporous hybrid carbon aerogel with heterogeneous structure derived from MXene/cellulose aerogel for absorption-dominant electromagnetic interference shielding and excellent thermal insulation performance. , 2022, Journal of colloid and interface science.
[3] Lifang Liu,et al. Recent Progress in the Application of Cellulose in Electromagnetic Interference Shielding Materials , 2022, Macromolecular Materials and Engineering.
[4] Hao Zhang,et al. Large-scale preparation of electrically conducting cellulose nanofiber/carbon nanotube aerogels: Ambient-dried, recyclable, and 3D-Printable , 2022, Carbon.
[5] A. Dufresne,et al. Multifunctional Nanocellulose/Carbon Nanotube Composite Aerogels for High-Efficiency Electromagnetic Interference Shielding , 2022, ACS Sustainable Chemistry & Engineering.
[6] Jianyu Zhai,et al. Waste cotton Fabric/MXene composite aerogel with heat generation and insulation for efficient electromagnetic interference shielding , 2022, Ceramics International.
[7] Meiling Zhang,et al. Lightweight Cellulose Nanofibril/Reduced Graphene Oxide Aerogels with Unidirectional Pores for Efficient Electromagnetic Interference Shielding , 2021, Advanced Materials Interfaces.
[8] K. Dai,et al. Low-temperature carbonized carbon nanotube/cellulose aerogel for efficient microwave absorption , 2021 .
[9] Y. Zhan,et al. Simple approach to fabricate MXene /cellulose paper for electromagnetic interference shielding applications , 2021 .
[10] P. Ren,et al. Construction of interconnected and oriented graphene nanosheets networks in cellulose aerogel film for high-efficiency electromagnetic interference shielding , 2021, Cellulose.
[11] C. Zhang,et al. Nanocellulose‐MXene Biomimetic Aerogels with Orientation‐Tunable Electromagnetic Interference Shielding Performance , 2020, Advanced science.
[12] Pengbo Liu,et al. Electromagnetic Interference Shielding Performance of Anisotropic Polyimide/graphene Composite Aerogels. , 2020, ACS applied materials & interfaces.
[13] J. Moon. Health effects of electromagnetic fields on children , 2020, Clinical and experimental pediatrics.
[14] Meiling Zhang,et al. Cellulose nanofibril (CNF) based aerogels prepared by a facile process and the investigation of thermal insulation performance , 2020, Cellulose.
[15] Tingting Wu,et al. Ultralight, Flexible and Biomimetic Nanocellulose/Silver Nanowire Aerogels for Electromagnetic Interference Shielding. , 2020, ACS nano.
[16] Biao Yang,et al. Structuring dense three-dimensional sheet-like skeleton networks in biomass-derived carbon aerogels for efficient electromagnetic interference shielding , 2019, Carbon.
[17] J. Hannu,et al. Lightweight Hierarchical Carbon Nanocomposites with Highly Efficient and Tunable Electromagnetic Interference Shielding Properties , 2019, ACS applied materials & interfaces.
[18] Biao Yang,et al. Ultralight Cellulose Porous Composites with Manipulated Porous Structure and Carbon Nanotube Distribution for Promising Electromagnetic Interference Shielding. , 2018, ACS applied materials & interfaces.
[19] Yan Zheng,et al. Polystyrene/rGO Composites with Orientation-3D Network Binary Structure and Its Surprising Conductivity , 2018, Macromolecules.
[20] Hongjuan Geng. A facile approach to light weight, high porosity cellulose aerogels. , 2018, International journal of biological macromolecules.
[21] L. Ratke,et al. Influence of hierarchical porous structures on the mechanical properties of cellulose aerogels , 2018, Journal of Sol-Gel Science and Technology.
[22] Lihua Zhang,et al. Porous superhydrophobic polymer/carbon composites for lightweight and self-cleaning EMI shielding application , 2018 .
[23] Jun-jie Wang,et al. Fabrication of Cellulose Aerogels Using a Green/Clean Procedure , 2018 .
[24] S. Agarwal,et al. Ultralight, Thermally Insulating, Compressible Polyimide Fiber Assembled Sponges. , 2017, ACS applied materials & interfaces.
[25] Licheng Zhou,et al. Microstructure Design of Lightweight, Flexible, and High Electromagnetic Shielding Porous Multiwalled Carbon Nanotube/Polymer Composites. , 2017, Small.
[26] Y. Grohens,et al. Effect of freeze-drying parameters on the microstructure and thermal insulating properties of nanofibrillated cellulose aerogels , 2017, Journal of Sol-Gel Science and Technology.
[27] Licheng Zhou,et al. Lightweight and Anisotropic Porous MWCNT/WPU Composites for Ultrahigh Performance Electromagnetic Interference Shielding , 2016 .
[28] Wei Fan,et al. Polymer/Carbon-Based Hybrid Aerogels: Preparation, Properties and Applications , 2015, Materials.
[29] H. Hao,et al. Electromagnetic interference shielding effectiveness of aluminum foams with different porosity , 2014 .
[30] Lim Wei Yap,et al. Manufacturable conducting rubber ambers and stretchable conductors from copper nanowire aerogel monoliths. , 2014, ACS nano.
[31] Chul B. Park,et al. Electrical properties and electromagnetic interference shielding effectiveness of polypropylene/carbon fiber composite foams , 2013 .
[32] I. Huynen,et al. Polymer/carbon based composites as electromagnetic interference (EMI) shielding materials , 2013 .
[33] Jianfeng Zhang,et al. Facile preparation of lightweight microcellular polyetherimide/graphene composite foams for electromagnetic interference shielding. , 2013, ACS applied materials & interfaces.
[34] Thomas Apperley,et al. Comparative study of electromagnetic interference shielding properties of injection molded versus compression molded multi-walled carbon nanotube/polystyrene composites , 2012 .
[35] Hui‐Ming Cheng,et al. Three-dimensional flexible and conductive interconnected graphene networks grown by chemical vapour deposition. , 2011, Nature materials.
[36] Mool C. Gupta,et al. Novel carbon nanotube-polystyrene foam composites for electromagnetic interference shielding. , 2005, Nano letters.
[37] James A. Ritter,et al. Preparation and Properties of Resorcinol–Formaldehyde Organic and Carbon Gels , 2003 .