Growth temperature and V/III ratio effects on the morphology and crystal structure of InP nanowires.

The effects of growth temperature and V/III ratio on the morphology and crystallographic phases of InP nanowires that are grown by metal organic chemical vapour deposition have been studied. We show that higher growth temperatures or higher V/III ratios promote the formation of wurtzite nanowires wh...

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Main Authors: Paiman, Suriati, Gao, Q., Joyce, H. J., Kim, Y., Tan, H. H., Jagadish, C., Zhang, X., Guo, Y., Zou, J.
Format: Article
Language:English
English
Published: IOP Publishing 2010
Online Access:http://psasir.upm.edu.my/id/eprint/14943/
http://psasir.upm.edu.my/id/eprint/14943/1/Growth%20temperature%20and%20V.pdf
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author Paiman, Suriati
Gao, Q.
Joyce, H. J.
Kim, Y.
Tan, H. H.
Jagadish, C.
Zhang, X.
Guo, Y.
Zou, J.
author_facet Paiman, Suriati
Gao, Q.
Joyce, H. J.
Kim, Y.
Tan, H. H.
Jagadish, C.
Zhang, X.
Guo, Y.
Zou, J.
author_sort Paiman, Suriati
building UPM Institutional Repository
collection Online Access
description The effects of growth temperature and V/III ratio on the morphology and crystallographic phases of InP nanowires that are grown by metal organic chemical vapour deposition have been studied. We show that higher growth temperatures or higher V/III ratios promote the formation of wurtzite nanowires while zinc-blende nanowires are favourable at lower growth temperatures and lower V/III ratios. A schematic map of distribution of zinc-blende and wurtzite structures has been developed in the range of growth temperatures (400–510 ◦C) and V/III ratios (44 to 700) investigated in this study.
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institution Universiti Putra Malaysia
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language English
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publishDate 2010
publisher IOP Publishing
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spelling upm-149432015-10-29T03:52:38Z http://psasir.upm.edu.my/id/eprint/14943/ Growth temperature and V/III ratio effects on the morphology and crystal structure of InP nanowires. Paiman, Suriati Gao, Q. Joyce, H. J. Kim, Y. Tan, H. H. Jagadish, C. Zhang, X. Guo, Y. Zou, J. The effects of growth temperature and V/III ratio on the morphology and crystallographic phases of InP nanowires that are grown by metal organic chemical vapour deposition have been studied. We show that higher growth temperatures or higher V/III ratios promote the formation of wurtzite nanowires while zinc-blende nanowires are favourable at lower growth temperatures and lower V/III ratios. A schematic map of distribution of zinc-blende and wurtzite structures has been developed in the range of growth temperatures (400–510 ◦C) and V/III ratios (44 to 700) investigated in this study. IOP Publishing 2010 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/14943/1/Growth%20temperature%20and%20V.pdf Paiman, Suriati and Gao, Q. and Joyce, H. J. and Kim, Y. and Tan, H. H. and Jagadish, C. and Zhang, X. and Guo, Y. and Zou, J. (2010) Growth temperature and V/III ratio effects on the morphology and crystal structure of InP nanowires. Journal of Physics D: Applied Physics, 43 (445402). pp. 1-6. ISSN 0022-3727 10.1088/0022-3727/43/44/445402 English
spellingShingle Paiman, Suriati
Gao, Q.
Joyce, H. J.
Kim, Y.
Tan, H. H.
Jagadish, C.
Zhang, X.
Guo, Y.
Zou, J.
Growth temperature and V/III ratio effects on the morphology and crystal structure of InP nanowires.
title Growth temperature and V/III ratio effects on the morphology and crystal structure of InP nanowires.
title_full Growth temperature and V/III ratio effects on the morphology and crystal structure of InP nanowires.
title_fullStr Growth temperature and V/III ratio effects on the morphology and crystal structure of InP nanowires.
title_full_unstemmed Growth temperature and V/III ratio effects on the morphology and crystal structure of InP nanowires.
title_short Growth temperature and V/III ratio effects on the morphology and crystal structure of InP nanowires.
title_sort growth temperature and v/iii ratio effects on the morphology and crystal structure of inp nanowires.
url http://psasir.upm.edu.my/id/eprint/14943/
http://psasir.upm.edu.my/id/eprint/14943/
http://psasir.upm.edu.my/id/eprint/14943/1/Growth%20temperature%20and%20V.pdf