Asset Details

  • Description:
  • a) Estimated ISS for PE composites with different DNTs (DNT‐1, DNT‐2, and DNT‐4, left panel), with different initial density (0.92, 0.95, and 1.00 g cc−1, middle panel), with pristine DNT‐2 (N) or C2H5 functionalized DNT‐2 (right panel). Refer to the Supporting Information for the trajectory of ΔEvdW for these studied samples; b) the percentage of PE atoms with atomic displacements over 2 Å. Insets show the atomic configurations at the sliding distance of ≈19 Å, and atoms with atomic displacements over 2 Å are colored red.
  • License:
  • Rights Managed
  • Rights Holder:
  • John Wiley & Sons, Inc.
  • License Rights Holder:
  • Copyright © 2016 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim
  • Asset Type:
  • Image
  • Asset Subtype:
  • Chart/Graph
  • Image Orientation:
  • Landscape
  • Image Dimensions:
  • 1000 x 369
  • Image File Size:
  • 934 KB
  • Creator:
  • Haifei Zhan, Gang Zhang, Vincent B. C. Tan, Yuan Cheng, John M. Bell, Yong‐Wei Zhang, Yuantong Gu
  • Credit:
  • Zhan, H., Zhang, G., Tan, V. B. C., Cheng, Y., Bell, J. M., Zhang, Y.-W., & Gu, Y. (2016). Diamond Nanothread as a New Reinforcement for Nanocomposites. Advanced Functional Materials, 26(29), 5279-5283. https://doi.org/10.1002/adfm.201600119.
  • Collection:
  • Keywords:
  • Restrictions:
  • Property Release:
  • No
  • Model Release:
  • No
  • Purchasable:
  • Yes
  • Sensitive Materials:
  • No
  • Article Authors:
  • Haifei Zhan, Gang Zhang, Vincent B. C. Tan, Yuan Cheng, John M. Bell, Yong‐Wei Zhang, Yuantong Gu
  • Article Copyright Year:
  • 2016
  • Publication Volume:
  • 26
  • Publication Issue:
  • 29
  • Publication Date:
  • 08/01/2016
  • DOI:
  • https://doi.org/10.1002/adfm.201600119

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