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Article detail · 2019 · article

Two-dimensional pnictogens: A review of recent progresses and future research directions

Journal Applied Physics Reviews
OpenAlex Open access · bronze SJR Q1 JCR Q1 Top 1%
Year2019
Citations175OpenAlex
Percentile%99.1
FWCI10.331.00 = world average
Scopus (SJR)Q1
WoS (JCR)Q1

Data source split

  • YÖKSİS venueApplied Physics Reviews
  • OpenAlexOpenAlex enrichment (abstract, citations, topics)

Abstract

OpenAlex English

Soon after the synthesis of two-dimensional (2D) ultrathin black phosphorus and fabrication of field effect transistors thereof, theoretical studies have predicted that other group-VA elements (or pnictogens), N, As, Sb, and Bi can also form stable, single-layer (SL) structures. These were nitrogene in a buckled honeycomb structure, arsenene, antimonene, and bismuthene in a buckled honeycomb, as well as washboard and square-octagon structures with unusual mechanical, electronic, and optical properties. Subsequently, theoretical studies are followed by experimental efforts that aim at synthesizing these novel 2D materials. Currently, research on 2D pnictogens has been a rapidly growing field revealing exciting properties, which offers diverse applications in flexible electronics, spintronics, thermoelectrics, and sensors. This review presents an evaluation of the previous experimental and theoretical studies until 2019, in order to provide input for further research attempts in this field. To this end, we first reviewed 2D, SL structures of group-VA elements predicted by theoretical studies with an emphasis placed on their dynamical and thermal stabilities, which are crucial for their use in a device. The mechanical, electronic, magnetic, and optical properties of the stable structures and their nanoribbons are analyzed by examining the effect of external factors, such as strain, electric field, and substrates. The effect of vacancy defects and functionalization by chemical doping through adatom adsorption on the fundamental properties of pnictogens has been a critical subject. Interlayer interactions in bilayer and multilayer structures, their stability, and tuning their physical properties by vertical stacking geometries are also discussed. Finally, our review is concluded by highlighting new research directions and future perspectives on the challenges in this emerging field.

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Citations

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175citationsOpenAlex · cited_by_count (cache / database)

40 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. 2020 Above Room Temperature Ferromagnetism in Gd2B2 Monolayer with High Magnetic AnisotropyCitations 46 · OpenAlex
  2. 2020 Above Room Temperature Ferromagnetism in Gd2B2 Monolayer with High Magnetic AnisotropyCitations 46 · OpenAlex
  3. 2020 Above Room Temperature Ferromagnetism in Gd 2 B 2 Monolayer with High Magnetic AnisotropyCitations 45 · OpenAlex
  4. 2020 Above Room Temperature Ferromagnetism in Gd2B2 Monolayerwith High Magnetic AnisotropyCitations 45 · OpenAlex
  5. 2022 Two-Dimensional Janus GePAs Monolayer: A Direct-Band-Gap Semiconductor with High and Anisotropic Mobility for Efficient Photocatalytic Water SplittingCitations 44 · OpenAlex
  6. 2020 Monolayer diboron dinitride: Direct band-gap semiconductor with high absorption in the visible rangeCitations 40 · OpenAlex
  7. 2020 Monolayer diboron dinitride: Direct band-gap semiconductor with high absorption in the visible rangeCitations 39 · OpenAlex
  8. 2021 Columnar antiferromagnetic order of a MBene monolayerCitations 32 · OpenAlex
  9. 2021 Columnar antiferromagnetic order of a MBene monolayerCitations 32 · OpenAlex
  10. 2021 Columnar antiferromagnetic order of a MBene monolayerCitations 32 · OpenAlex

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