Literature DB >> 34782460

Extreme mechanical anisotropy in diamond with preferentially oriented nanotwin bundles.

Yilong Pan1, Pan Ying1,2, Yufei Gao1,2, Peng Liu3, Ke Tong4, Dongli Yu1, Kaili Jiang3, Wentao Hu1, Baozhong Li1, Bing Liu1, Zhisheng Zhao4, Julong He1, Bo Xu4, Zhongyuan Liu1, Yongjun Tian1.   

Abstract

Mechanical properties of covalent materials can be greatly enhanced with strategy of nanostructuring. For example, the nanotwinned diamond with an isotropic microstructure of interweaved nanotwins and interlocked nanograins shows unprecedented isotropic mechanical properties. How the anisotropic microstructure would impact on the mechanical properties of diamond has not been fully investigated. Here, we report the synthesis of diamond from superaligned multiwalled carbon nanotube films under high pressure and high temperature. Structural characterization reveals preferentially oriented diamond nanotwin bundles with an average twin thickness of ca. 2.9 nm, inherited from the directional nanotubes. This diamond exhibits extreme mechanical anisotropy correlated with its microstructure (e.g., the average Knoop hardness values measured with the major axis of the indenter perpendicular and parallel to nanotwin bundles are 233 ± 8 and 129 ± 9 GPa, respectively). Molecular dynamics simulation reveals that, in the direction perpendicular to the nanotwin bundles, the dense twin boundaries significantly hinder the motion of dislocations under indentation, while such a resistance is much weaker in the direction along the nanotwin bundles. Current work verifies the hardening effect in diamond via nanostructuring. In addition, the mechanical properties can be further tuned (anisotropy) with microstructure design and modification.

Entities:  

Keywords:  anisotropy; diamond; mechanical properties; nanotwin bundles; preferential orientation

Year:  2021        PMID: 34782460      PMCID: PMC8617480          DOI: 10.1073/pnas.2108340118

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  14 in total

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Journal:  IEEE Trans Med Imaging       Date:  1992       Impact factor: 10.048

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Authors:  L Lu; X Chen; X Huang; K Lu
Journal:  Science       Date:  2009-01-30       Impact factor: 47.728

6.  Complex nanostructures in diamond.

Authors:  Péter Németh; Kit McColl; Laurence A J Garvie; Christoph G Salzmann; Mara Murri; Paul F McMillan
Journal:  Nat Mater       Date:  2020-11       Impact factor: 43.841

Review 7.  Synthesis of Anisotropic Hydrogels and Their Applications.

Authors:  Koki Sano; Yasuhiro Ishida; Takuzo Aida
Journal:  Angew Chem Int Ed Engl       Date:  2018-01-10       Impact factor: 15.336

8.  Ultrahard nanotwinned cubic boron nitride.

Authors:  Yongjun Tian; Bo Xu; Dongli Yu; Yanming Ma; Yanbin Wang; Yingbing Jiang; Wentao Hu; Chengchun Tang; Yufei Gao; Kun Luo; Zhisheng Zhao; Li-Min Wang; Bin Wen; Julong He; Zhongyuan Liu
Journal:  Nature       Date:  2013-01-17       Impact factor: 49.962

9.  Diamond-Graphene Composite Nanostructures.

Authors:  Péter Németh; Kit McColl; Rachael L Smith; Mara Murri; Laurence A J Garvie; Matteo Alvaro; Béla Pécz; Adrian P Jones; Furio Corà; Christoph G Salzmann; Paul F McMillan
Journal:  Nano Lett       Date:  2020-04-21       Impact factor: 11.189

10.  Dislocation behaviors in nanotwinned diamond.

Authors:  Jianwei Xiao; Huizhen Yang; Xiaozhi Wu; Fatima Younus; Peng Li; Bin Wen; Xiangyi Zhang; Yanbin Wang; Yongjun Tian
Journal:  Sci Adv       Date:  2018-09-21       Impact factor: 14.136

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