Saunders, Ruth B., Garry, Seamus, Byrne, Daragh ORCID: 0000-0002-2040-9765, Henry, Martin O. and McGlynn, Enda ORCID: 0000-0002-3412-9035 (2012) Length versus radius relationship for ZnO nanowires grown via vapour phase transport. Crystal Growth & Design, 12 . pp. 5972-5979. ISSN 1528-7483
Abstract
We model the growth of ZnO nanowires via vapour phase transport and examine the relationship predicted between the nanowire length and radius. The model predicts that the
lengths of the nanowires increase with decreasing nanowire radii. This prediction is in very good agreement with experimental data from a variety of nanowire samples, including samples showing a broad range of nanowire radii and samples grown using a lithographic technique to constrain the nanowire radius. The close agreement of the model and the experimental data strongly support supporting the inclusion of a surface diffusion term in the model for the incorporation of species into a growing nanowire.
Metadata
Item Type: | Article (Published) |
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Refereed: | Yes |
Subjects: | Physical Sciences > Physics Physical Sciences > Nanotechnology Physical Sciences > Chemistry Physical Sciences > Semiconductors |
DCU Faculties and Centres: | Research Institutes and Centres > National Centre for Plasma Science and Technology (NCPST) DCU Faculties and Schools > Faculty of Science and Health > School of Physical Sciences |
Publisher: | American Chemical Society |
Official URL: | http://dx.doi.org/10.1021/cg3009738 |
Copyright Information: | ©2012 ACS |
Use License: | This item is licensed under a Creative Commons Attribution-NonCommercial-Share Alike 3.0 License. View License |
Funders: | RBS - Irish Research Council for Science, Engineering and Technology (IRCSET) Embark Postgraduate Research Scholarship, S.G. & M.O.H. - SFI RFP program, D.B. - SFI SRC “FORME”, E.M. - SFI PI, SRC “FORME” and RFP grant sources |
ID Code: | 17781 |
Deposited On: | 08 Feb 2013 11:10 by Enda Mcglynn . Last Modified 04 Oct 2018 12:24 |
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