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Carbon Nanotubes Information at NIST

  • Armchair Science: DNA Strands That Select Nanotubes Are First Step to a Practical ‘Quantum Wire’

  • Carbon NanoTube Digital Electronics Workshop

  • Carbon Nanotube Measurements: Latest in NIST ‘How-To’ Series

  • Chemical Characterization of Nanoparticles

  • 'Cloning' Could Make Structurally Pure Nanotubes for Nanoelectronics

  • CNST and Sandia Researchers Publish a Detailed Review of Electrical Contacts in One and Two Dimensional Nanomaterials

  • CNST Hosts Workshop on In Situ Measurements using Transmission Electron Microscopy

  • CNST Releases the Spring 2012 Edition of The CNST News

  • CNST Releases the Summer 2012 Edition of The CNST News

  • Combining Nanotubes and Antibodies for Breast Cancer ‘Search and Destroy’ Missions

  • Electron Microscopy of Carbon Nanotube Composites

  • Frank W. Gayle

  • Guangjun Cheng

  • In Situ Characterization of Nanoscale Gas-Solid Interactions by TEM

  • John Bonevich

  • Laser Applications Heat Up for Carbon Nanotubes

  • Longer is Better for Nanotube Optical Properties

  • Modeling Dispersion Rheology for Non-Spherical Particles

  • NIST Laser-Based Method Cleans Up Grubby Nanotubes

  • NIST Scientists Address ‘Wrinkles’ in Transparent Film Development

  • NIST SRM for Reproducible Analyses of Single-Walled Carbon Nanotubes

  • NIST Study Suggests Carbon Nanotubes May Protect DNA from Oxidation

  • NIST Uncovers Reliability Issues for Carbon Nanotubes in Future Electronics

  • Piece of Cake: Arrays of Long Nanotubes May Help Measure Terahertz Laser Power

  • Prototype NIST Device Measures Absolute Optical Power in Fiber at Nanowatt Levels

  • Raman facility

  • Researchers Observe, Control, and Optimize the Growth of Individual Carbon Nanotubes

  • Shaking Things Up: NIST Researchers Propose New Old Way to Purify Carbon Nanotubes

  • Study: Cells Selectively Absorb Short Nanotubes

  • Super-Nanotubes: 'Remarkable' Spray-on Coating Combines Carbon Nanotubes with Ceramic