Scaling the Stiffness, Strength, and Toughness of Ceramic-Coated Nanotube Foams into the Structural Regime

被引:48
作者
Brieland-Shoultz, Anna [1 ]
Tawfick, Sameh [1 ,3 ]
Park, Sei Jin [1 ]
Bedewy, Mostafa [1 ]
Maschmann, Matthew R. [2 ]
Baur, Jeffery W. [2 ]
Hart, A. John [3 ]
机构
[1] Univ Michigan, Dept Mech Engn, Ann Arbor, MI 48109 USA
[2] AFRL RX, Mat & Mfg Directorate, Air Force Res Lab, Wright Patterson AFB, OH 45433 USA
[3] MIT, Dept Mech Engn, Cambridge, MA 02139 USA
基金
美国国家科学基金会; 美国国家卫生研究院;
关键词
nanocomposite; foam; carbon nanotube; ceramic; mechanics; ATOMIC LAYER DEPOSITION; CARBON NANOTUBES; GROWTH; MORPHOLOGY; MECHANICS; DENSITY;
D O I
10.1002/adfm.201400851
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Natural materials such as bone and tooth achieve precisely tuned mechanical and interfacial properties by varying the concentration and orientation of their nanoscale constituents. However, the realization of such control in engineered foams is limited by manufacturing-driven tradeoffs among the size, order, and dispersion uniformity of the building blocks. It is demonstrated how to manufacture nanocomposite foams with precisely controllable mechanical properties via aligned carbon nanotube (CNT) growth followed by atomic layer deposition (ALD). By starting with a low density CNT forest and varying the ALD coating thickness, we realize predictable approximate to 1000-fold control of Young's modulus (14 MPa to 20 GPa, where E approximate to (2.8)), ultimate compressive strength (0.8 MPa to 0.16 GPa), and energy absorption (0.4 to 400 J cm(-3)). Owing to the continuous, long CNTs within the ceramic nanocomposite, the compressive strength and toughness of the new material are 10-fold greater than commercially available aluminum foam over the same density range. Moreover, the compressive stiffness and strength equal that of compact bone at 10% lower density. Along with emerging technologies for scalable patterning and roll-to-roll manufacturing and lamination of CNT films, coated CNT foams may be especially suited to multifunctional applications such as catalysis, filtration, and thermal protection.
引用
收藏
页码:5728 / 5735
页数:8
相关论文
共 42 条
[1]   Compressive and tensile behaviour of aluminum foams [J].
Andrews, E ;
Sanders, W ;
Gibson, LJ .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1999, 270 (02) :113-124
[2]   Three-dimensional coherent x-ray diffraction imaging of a ceramic nanofoam: Determination of structural deformation mechanisms [J].
Barty, A. ;
Marchesini, S. ;
Chapman, H. N. ;
Cui, C. ;
Howells, M. R. ;
Shapiro, D. A. ;
Minor, A. M. ;
Spence, J. C. H. ;
Weierstall, U. ;
Ilavsky, J. ;
Noy, A. ;
Hau-Riege, S. P. ;
Artyukhin, A. B. ;
Baumann, T. ;
Willey, T. ;
Stolken, J. ;
van Buuren, T. ;
Kinney, J. H. .
PHYSICAL REVIEW LETTERS, 2008, 101 (05)
[3]   Population Growth Dynamics of Carbon Nanotubes [J].
Bedewy, Mostafa ;
Meshot, Eric R. ;
Reinker, Michael J. ;
Hart, A. John .
ACS NANO, 2011, 5 (11) :8974-8989
[4]   Collective Mechanism for the Evolution and Self-Termination of Vertically Aligned Carbon Nanotube Growth [J].
Bedewy, Mostafa ;
Meshot, Eric R. ;
Guo, Haicheng ;
Verploegen, Eric A. ;
Lu, Wei ;
Hart, A. John .
JOURNAL OF PHYSICAL CHEMISTRY C, 2009, 113 (48) :20576-20582
[5]   Super-compressible foamlike carbon nanotube films [J].
Cao, AY ;
Dickrell, PL ;
Sawyer, WG ;
Ghasemi-Nejhad, MN ;
Ajayan, PM .
SCIENCE, 2005, 310 (5752) :1307-1310
[6]   Multifunctional properties of high volume fraction aligned carbon nanotube polymer composites with controlled morphology [J].
Cebeci, Huelya ;
de Villoria, Roberto Guzman ;
Hart, A. John ;
Wardle, Brian L. .
COMPOSITES SCIENCE AND TECHNOLOGY, 2009, 69 (15-16) :2649-2656
[7]   Carbon Nanotubes: Present and Future Commercial Applications [J].
De Volder, Michael F. L. ;
Tawfick, Sameh H. ;
Baughman, Ray H. ;
Hart, A. John .
SCIENCE, 2013, 339 (6119) :535-539
[8]   Fiber Containment for Improved Laboratory Handling and Uniform Nanocoating of Milligram Quantities of Carbon Nanotubes by Atomic Layer Deposition [J].
Devine, Christina K. ;
Oldham, Christopher J. ;
Jur, Jesse S. ;
Gong, Bo ;
Parsons, Gregory N. .
LANGMUIR, 2011, 27 (23) :14497-14507
[9]   Atomic layer deposition on suspended single-walled carbon nanotubes via gas-phase noncovalent functionalization [J].
Farmer, DB ;
Gordon, RG .
NANO LETTERS, 2006, 6 (04) :699-703
[10]  
German R.M., 1996, SINTERING THEORY PRA, P568