Literature DB >> 26962973

Formation Mechanism of Fe Nanocubes by Magnetron Sputtering Inert Gas Condensation.

Junlei Zhao1, Ekaterina Baibuz1, Jerome Vernieres2, Panagiotis Grammatikopoulos2, Ville Jansson1, Morten Nagel1, Stephan Steinhauer2, Mukhles Sowwan2,3, Antti Kuronen1, Kai Nordlund1, Flyura Djurabekova1.   

Abstract

In this work, we study the formation mechanisms of iron nanoparticles (Fe NPs) grown by magnetron sputtering inert gas condensation and emphasize the decisive kinetics effects that give rise specifically to cubic morphologies. Our experimental results, as well as computer simulations carried out by two different methods, indicate that the cubic shape of Fe NPs is explained by basic differences in the kinetic growth modes of {100} and {110} surfaces rather than surface formation energetics. Both our experimental and theoretical investigations show that the final shape is defined by the combination of the condensation temperature and the rate of atomic deposition onto the growing nanocluster. We, thus, construct a comprehensive deposition rate-temperature diagram of Fe NP shapes and develop an analytical model that predicts the temporal evolution of these properties. Combining the shape diagram and the analytical model, morphological control of Fe NPs during formation is feasible; as such, our method proposes a roadmap for experimentalists to engineer NPs of desired shapes for targeted applications.

Entities:  

Keywords:  Fe nanocubes; inert gas condensation; kinetic Monte Carlo; kinetic effect; molecular dynamics

Year:  2016        PMID: 26962973     DOI: 10.1021/acsnano.6b01024

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  7 in total

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Authors:  Rishabha Malviya; Shakshi Raj; Shivkanya Fuloria; Vetriselvan Subramaniyan; Neeraj Kumar Fuloria; Kathiresan Sathasivam; Usha Kumari; Dhanalekshmi Unnikrishnan Meenakshi; Omji Porwal; Darnal Hari Kumar; Amit Singh; Srikumar Chakravarthi
Journal:  Int J Nanomedicine       Date:  2021-03-29

2.  Single-step generation of metal-plasma polymer multicore@shell nanoparticles from the gas phase.

Authors:  Pavel Solař; Oleksandr Polonskyi; Ansgar Olbricht; Alexander Hinz; Artem Shelemin; Ondřej Kylián; Andrei Choukourov; Franz Faupel; Hynek Biederman
Journal:  Sci Rep       Date:  2017-08-17       Impact factor: 4.379

3.  Aggregation vs Surface Segregation: Antagonism over the Magnetic Behavior of NiCr Nanoparticles.

Authors:  Murtaza Bohra; Vidya Alman; Arun Showry; Vidyadhar Singh; Rosa E Diaz; Mukhles Sowwan; Panagiotis Grammatikopoulos
Journal:  ACS Omega       Date:  2020-12-14

4.  Recent Progress of Atomic Layer Technology in Spintronics: Mechanism, Materials and Prospects.

Authors:  Yuanlu Tsai; Zhiteng Li; Shaojie Hu
Journal:  Nanomaterials (Basel)       Date:  2022-02-16       Impact factor: 5.076

5.  Data sets of migration barriers for atomistic Kinetic Monte Carlo simulations of Fe self-diffusion.

Authors:  Ekaterina Baibuz; Simon Vigonski; Jyri Lahtinen; Junlei Zhao; Ville Jansson; Vahur Zadin; Flyura Djurabekova
Journal:  Data Brief       Date:  2018-04-24

6.  Synthesis of hafnium nanoparticles and hafnium nanoparticle films by gas condensation and energetic deposition.

Authors:  Irini Michelakaki; Nikos Boukos; Dimitrios A Dragatogiannis; Spyros Stathopoulos; Costas A Charitidis; Dimitris Tsoukalas
Journal:  Beilstein J Nanotechnol       Date:  2018-06-27       Impact factor: 3.649

7.  Core-Satellite Gold Nanoparticle Complexes Grown by Inert Gas-Phase Condensation.

Authors:  Junlei Zhao; Alvaro Mayoral; Lidia Martínez; Mikael P Johansson; Flyura Djurabekova; Yves Huttel
Journal:  J Phys Chem C Nanomater Interfaces       Date:  2020-10-21       Impact factor: 4.126

  7 in total

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