1,265
Views
0
CrossRef citations to date
0
Altmetric
Original Report

Formation of self-organized nano- and micro-diamond rings

, , , ORCID Icon, &
Pages 300-307 | Received 27 Jan 2021, Published online: 30 Mar 2021

References

  • Das D, Singh RN. A review of nucleation, growth and low temperature synthesis of diamond thin films. Int Mater Rev. 2007;52:29–64.
  • Nebel CE, Rezek B, Shin D, et al. Diamond for bio-sensor applications. J Phys D Appl Phys. 2007;40:6443–6466.
  • Bundy FP, Bassett WA, Weathers MS, et al. The pressure-temperature phase and transformation diagram for carbon; updated through 1994. Carbon N Y. 1996;34:141–153.
  • Angus JC, Hayman CC. Low-pressure, metastable growth of diamond and “diamondlike” phases. Science. 1988;241:913–921.
  • Chen X, Narayan J. Effect of the chemical nature of transition-metal substrates on chemical-vapor deposition of diamond. J Appl Phys. 1993;74:4168–4173.
  • Singh RK, Gilbert DR, Fitz-Gerald J, et al. Engineered interfaces for adherent diamond coatings on large thermal- expansion coefficient mismatched substrates. Science. 1996;272:396–398.
  • Narayan J, Bhaumik A. Novel phase of carbon, ferromagnetism, and conversion into diamond. J Appl Phys. 2015;118. US Patent # 10,566,193 (2019).
  • Narayan J, Bhaumik A, Gupta S, et al. Progress in Q-carbon and related materials with extraordinary properties. Mater Res Lett. 2018;6:353–364.
  • Narayan J, Bhaumik A. Sachan r: high temperature superconductivity in distinct phases of amorphous B-doped Q-carbon. J Appl Phys. 2018;123:135304.
  • Sachan R, Hachtel JA, Bhaumik A, et al. Emergence of shallow energy levels in B-doped Q-carbon: a high-temperature superconductor. Acta Mater. 2019;174:153–159.
  • Singh RK, Narayan J. A novel method for simulating laser-solid interactions in semiconductors and layered structures. Mater Sci Eng B. 1989;3:217–230.
  • Kim KH, Akase Z, Suzuki T, et al. Charging effects on SEM/SIM contrast of metal/insulator system in various metallic coating conditions. Mater Trans. 2010;51:1080–1083.
  • Wood RF, Lowndes DH. Narayan j: bulk nucleation and amorphous phase formation in highly undercooled molten silicon. Appl Phys Lett. 1984;44:770–772.
  • Lowndes DH, Wood RF, Narayan J. Pulsed-laser melting of amorphous silicon: time-resolved measurements and model calculations. Phys Rev Lett. 1984;52:561–564.
  • Narayan J, Larson BC. Domain epitaxy: a unified paradigm for thin film growth. J Appl Phys. 2003;93:278–285.
  • Narayan J, Wang H, Choi HK, et al. Effect of thickness variation in high-efficiency InGaN/GaN light-emitting diodes. Appl Phys Lett. 2002;81:841–843.
  • Narayan J, Bhaumik A. Novel synthesis and properties of pure and NV-doped nanodiamonds and other nanostructures. Mater Res Lett. 2017;5:242–250.
  • Donati C, Douglas JF, Kob W, et al. Stringlike cooperative motion in a supercooled liquid. Phys Rev Lett. 1998;80:2338–2341.
  • Gebremichael Y, Vogel M, Glotzer SC. Particle dynamics and the development of string-like motion in a M monoatomic supercooled liquid. J Chem Phys. 2004;120:4415–4427.
  • Sakai Y, Chelikowsky JR. Cohen ML: simulating the effect of boron doping in superconducting carbon. Phys Rev B. 2018;97.054501.
  • Yoshinaka H, Inubushi S, Wakita T, et al. Formation of Q-carbon by adjusting sp3 content in diamond-like carbon films and laser energy density of pulsed laser annealing. Carbon N Y. 2020;167:504–511.