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Tunable electronic and magnetic properties of two-dimensional materials and their one-dimensional derivatives

  • Zhuhua Zhang
  • , Xiaofei Liu
  • , Jin Yu
  • , Yang Hang
  • , Yao Li
  • , Yufeng Guo
  • , Ying Xu
  • , Xu Sun
  • , Jianxin Zhou
  • , Wanlin Guo
  • Nanjing University of Aeronautics and Astronautics

Research output: Contribution to journalReview articlepeer-review

80 Scopus citations

Abstract

Low-dimensional materials exhibit many exceptional properties and functionalities which can be efficiently tuned by externally applied force or fields. Here we review the current status of research on tuning the electronic and magnetic properties of low-dimensional carbon, boron nitride, metal-dichalcogenides, phosphorene nanomaterials by applied engineering strain, external electric field and interaction with substrates, etc, with particular focus on the progress of computational methods and studies. We highlight the similarities and differences of the property modulation among one- and two-dimensional nanomaterials. Recent breakthroughs in experimental demonstration of the tunable functionalities in typical nanostructures are also presented. Finally, prospective and challenges for applying the tunable properties into functional devices are discussed. WIREs Comput Mol Sci 2016, 6:324–350. doi: 10.1002/wcms.1251. For further resources related to this article, please visit the WIREs website. Conflict of interest: The authors have declared no conflicts of interest for this article.

Original languageEnglish
Pages (from-to)324-350
Number of pages27
JournalWiley Interdisciplinary Reviews: Computational Molecular Science
Volume6
Issue number4
DOIs
StatePublished - 1 Jul 2016
Externally publishedYes

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