Exploring advantages of diverse carbon nanotube forests with tailored structures synthesized by supergrowth from engineered catalysts.
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Summary
By controlling the catalyst film thickness, carbon nanotube forests composed from nanotubes with different size and wall number are synthesized, finding many interesting dependencies among CNT forest structures and their properties, which were unknown previously.
- Type
- article
- Published
- 2009-01-27
- Cited by
- 151
- References
- 35
- OpenAlex
- https://openalex.org/W19206256
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5080362
Keywords
Art, Aesthetics, Philosophy
References
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- Dynamics and Limiting Mechanisms of Self-Aligned Carbon Nanotube Growth.
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- Integration of vertically-aligned carbon nanotubes into microsystems: a packaging perspective
- Straightness of Growth for Carbon Nanotube Microelectromechanical Systems
- Denser and taller carbon nanotube arrays on Cu foils useable as thermal interface materials
- Preparation and Transport Performances of High-Density, Aligned Carbon Nanotube Membranes
- Elektrotermiczna synteza nanorurek węglowych pod ciśnieniem atmosferycznym
- Phenol adsorption on different nano-sized carbon materials: first comparative study
- Double-walled carbon nanotube array for CO2 and SO2 adsorption.
- Crystal Structure Analysis of Multiwalled Carbon Nanotube Forests by Newly Developed Cross-Sectional X-ray Diffraction Measurement
- Regrowth analysis of multiwalled carbon nanotube forests
- Electrical conductance behavior of thin Ni catalyst films during intermittent direct current magnetron sputtering
- Efficient growth of millimeter-long few-walled carbon nanotube forests and their oil sorption
- Formation of three-dimensional carbon nanotube structures by controllable vapor densification
- Materials made of carbon nanotubes. The carbon nanotube forest
- Growth of carbon nanotube forests on metallic thin films
- Carbon Dioxide Plasma as a Versatile Medium for Purification and Functionalization of Vertically Aligned Carbon Nanotubes
- Electrowetting control of Cassie-to-Wenzel transitions in superhydrophobic carbon nanotube-based nanocomposites.
- Structural and morphological dependence of carbon nanotube arrays on catalyst aggregation
- Growth control of single-walled, double-walled, and triple-walled carbon nanotube forests by a priori electrical resistance measurement of catalyst films
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