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Indentation Tests Reveal Geometry-Regulated Stiffening of Nanotube Junctions
Sehmus Ozden1, Yang Yang1, Chandra Sekhar Tiwary1
1Department of Materials Science and NanoEngineering, Rice University , Houston, Texas 77005, United States.
Abstract:
Here we report a unique method to locally determine the mechanical response of individual covalent junctions between carbon nanotubes (CNTs), in various configurations such as "X", "Y", and "Λ"-like. The setup is based on in situ indentation using a picoindenter integrated within a scanning electron microscope. This allows for precise mapping between junction geometry and mechanical behavior and uncovers geometry-regulated junction stiffening. Molecular dynamics simulations reveal that the dominant contribution to the nanoindentation response is due to the CNT walls stretching at the junction. Targeted synthesis of desired junction geometries can therefore provide a "structural alphabet" for construction of macroscopic CNT networks with tunable mechanical response.

