Aligned-SWCNT film laminated nanocomposites: Role of the film on mechanical and electrical properties
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Xiaodong He | M. Pasquali | J. Lou | Xiaodong He | Jiangtan Yuan | Yingchao Yang | Chao Wang | R. Headrick | Chao Sui | Zi-Wei Pan
[1] E. Cairns,et al. Freeze-Dried Sulfur-Graphene Oxide-Carbon Nanotube Nanocomposite for High Sulfur-Loading Lithium/Sulfur Cells. , 2017, Nano letters.
[2] Licheng Zhou,et al. Microstructure Design of Lightweight, Flexible, and High Electromagnetic Shielding Porous Multiwalled Carbon Nanotube/Polymer Composites. , 2017, Small.
[3] R. Carter,et al. Sulfur Vapor-Infiltrated 3D Carbon Nanotube Foam for Binder-Free High Areal Capacity Lithium-Sulfur Battery Composite Cathodes. , 2017, ACS nano.
[4] A. Manthiram,et al. Sulfur-Immobilized, Activated Porous Carbon Nanotube Composite Based Cathodes for Lithium-Sulfur Batteries. , 2017, Small.
[5] K. Hata,et al. Stretchable electromagnetic-interference shielding materials made of a long single-walled carbon-nanotube–elastomer composite , 2017 .
[6] J. Chiou,et al. Flexible polymer/multi-walled carbon nanotube composite sensor array equipped with microheater for gas sensing , 2016, 2016 International Conference on Manipulation, Automation and Robotics at Small Scales (MARSS).
[7] Youngseok Oh,et al. Preformed nanoporous carbon nanotube scaffold-based multifunctional polymer composites. , 2015, ACS nano.
[8] M. Terrones,et al. Synthesis of macroporous poly(acrylic acid)-carbon nanotube composites by frontal polymerization in deep-eutectic solvents , 2013 .
[9] Shannon L. Eichmann,et al. High-performance carbon nanotube transparent conductive films by scalable dip coating. , 2012, ACS nano.
[10] Z. Pan,et al. Hydrogen Passivation Induced Dispersion of Multi‐Walled Carbon Nanotubes , 2012, Advanced materials.
[11] Micah J. Green,et al. Spontaneous dissolution of ultralong single- and multiwalled carbon nanotubes. , 2010, ACS nano.
[12] M. Lima,et al. Elastomeric Conductive Composites Based on Carbon Nanotube Forests , 2010, Advanced materials.
[13] M. Terrones,et al. Robust, Conducting, and Transparent Polymer Composites Using Surface‐Modified and Individualized Double‐Walled Carbon Nanotubes , 2008 .
[14] J. Coleman,et al. Kevlar coated carbon nanotubes for reinforcement of polyvinylchloride , 2008 .
[15] Mark A. Locascio,et al. Measurements of near-ultimate strength for multiwalled carbon nanotubes and irradiation-induced crosslinking improvements. , 2008, Nature nanotechnology.
[16] Michael Sennett,et al. High-Performance Carbon Nanotube Fiber , 2007, Science.
[17] D. Milkie,et al. Carbon Nanotube Aerogels , 2007 .
[18] Jihyun Yoon,et al. Sandwich‐Type Laminated Nanocomposites Developed by Selective Dip‐Coating of Carbon Nanotubes , 2007 .
[19] P. Ajayan,et al. Multifunctional composites using reinforced laminae with carbon-nanotube forests , 2006, Nature materials.
[20] Chuck Zhang,et al. Effective amino-functionalization of carbon nanotubes for reinforcing epoxy polymer composites , 2006, Nanotechnology.
[21] S I Cha,et al. Extraordinary Strengthening Effect of Carbon Nanotubes in Metal‐Matrix Nanocomposites Processed by Molecular‐Level Mixing , 2005, Advanced materials.
[22] Mei Lu,et al. Thermal and mechanical properties of single-walled carbon nanotube bundle-reinforced epoxy nanocomposites : the role of solvent for nanotube dispersion , 2005 .
[23] K. R. Atkinson,et al. Multifunctional Carbon Nanotube Yarns by Downsizing an Ancient Technology , 2004, Science.
[24] K. Schulte,et al. Carbon nanotube-reinforced epoxy-composites: enhanced stiffness and fracture toughness at low nanotube content , 2004 .
[25] Michael A. Sutton,et al. Nanomechanical characterization of single-walled carbon nanotube reinforced epoxy composites , 2004 .
[26] John R. Reynolds,et al. Transparent, Conductive Carbon Nanotube Films , 2004, Science.
[27] Werner J. Blau,et al. High Performance Nanotube‐Reinforced Plastics: Understanding the Mechanism of Strength Increase , 2004 .
[28] Werner J. Blau,et al. Reinforcement of polymers with carbon nanotubes: The role of nanotube surface area , 2004 .
[29] Jiang Zhu,et al. Improving the Dispersion and Integration of Single-Walled Carbon Nanotubes in Epoxy Composites through Functionalization , 2003 .
[30] Maurizio Prato,et al. Molecular design of strong single-wall carbon nanotube/polyelectrolyte multilayer composites , 2002, Nature materials.
[31] Otto Zhou,et al. Fabrication and Properties of Composites of Poly(ethylene oxide) and Functionalized Carbon Nanotubes , 2002 .
[32] T. Chou,et al. Advances in the science and technology of carbon nanotubes and their composites: a review , 2001 .
[33] Hui-Ming Cheng,et al. Tensile strength of single-walled carbon nanotubes directly measured from their macroscopic ropes , 2000 .
[34] R. Ruoff,et al. Tensile loading of ropes of single wall carbon nanotubes and their mechanical properties , 2000, Physical review letters.
[35] Jun Liu,et al. Surfactant-assisted processing of carbon nanotube/polymer composites , 2000 .
[36] R. Ruoff,et al. Strength and breaking mechanism of multiwalled carbon nanotubes under tensile load , 2000, Science.
[37] Charles M. Lieber,et al. Nanobeam Mechanics: Elasticity, Strength, and Toughness of Nanorods and Nanotubes , 1997 .
[38] Lin Xu,et al. Gigahertz integrated circuits based on carbon nanotube films , 2018 .
[39] Meng-Kao Yeh,et al. Mechanical behavior of phenolic-based composites reinforced with multi-walled carbon nanotubes , 2006 .
[40] M. Yeh,et al. Enhancement of the mechanical properties of carbon nanotube/phenolic composites using a carbon nanotube network as the reinforcement , 2004 .