The 3D-tomography of the nano-clusters formed by Fe-coating and annealing of diamond films for enhancing their surface electron field emitters
The Fe-coating and H2-annealed processes markedly increased the conductivity and enhanced the surface electron field emission (s-EFE) properties for the diamond films. The enhancement on the s-EFE properties for the diamond films is presumably owing to the formation of nano-graphite clusters on the...
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doaj-d4b0bc9448ed485c98d06d05fd658f452020-11-25T00:57:15ZengAIP Publishing LLCAIP Advances2158-32262012-09-0123032153032153-1710.1063/1.4748865053203ADVThe 3D-tomography of the nano-clusters formed by Fe-coating and annealing of diamond films for enhancing their surface electron field emittersHuang-Chin Chen0Shen-Chuan Lo1Li-Jiaun Lin2Pin-Chang Huang3Wen-Ching Shih4I-Nan Lin5Chi-Young Lee6Department of Physics, Tamkang University, New-Taipei 251, Taiwan, Republic of ChinaDepartment of Microstructure and Characterization, Material and Chemical Research Laboratories, Industrial Technology Research Institute, Hsin-Chu 310, Taiwan, Republic of ChinaDepartment of Microstructure and Characterization, Material and Chemical Research Laboratories, Industrial Technology Research Institute, Hsin-Chu 310, Taiwan, Republic of ChinaGraduate Institute in Electro-Optical Engineering, Tatung University, Taipei 104, Taiwan, Republic of ChinaGraduate Institute in Electro-Optical Engineering, Tatung University, Taipei 104, Taiwan, Republic of ChinaDepartment of Physics, Tamkang University, New-Taipei 251, Taiwan, Republic of ChinaDepartment of Materials Science and Engineering, National Tsing-Hua University, Hsinchu 300, Taiwan, Republic of ChinaThe Fe-coating and H2-annealed processes markedly increased the conductivity and enhanced the surface electron field emission (s-EFE) properties for the diamond films. The enhancement on the s-EFE properties for the diamond films is presumably owing to the formation of nano-graphite clusters on the surface of the films via the Fe-to-diamond interaction. However, the extent of enhancement varied with the granular structure of the diamond films. For the microcrystalline (MCD) films, the s-EFE process can be turned on at (E0)MCD = 1.9 V/μm, achieving a large s-EFE current density of (Je)MCD = 315 μA/cm2 at an applied field of 8.8 V/μm. These s-EFE properties are markedly better than those for Fe-coated/annealed ultrananocrystalline diamond (UNCD) films with (E0)UNCD = 2.0 V/μm and (Je)UNCD = 120 μA/cm2. The transmission electron microscopy showed that the nano-graphite clusters formed an interconnected network for MCD films that facilitated the electron transport more markedly, as compared with the isolated nano-graphitic clusters formed at the surface of the UNCD films. Therefore, the Fe-coating/annealing processes improved the s-EFE properties for the MCD films more markedly than that for the UNCD films. The understanding on the distribution of the nano-clusters is of critical importance in elucidating the authentic factor that influences the s-EFE properties of the diamond films. Such an understanding is possible only through the 3D-tomographic investigations.http://dx.doi.org/10.1063/1.4748865 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Huang-Chin Chen Shen-Chuan Lo Li-Jiaun Lin Pin-Chang Huang Wen-Ching Shih I-Nan Lin Chi-Young Lee |
spellingShingle |
Huang-Chin Chen Shen-Chuan Lo Li-Jiaun Lin Pin-Chang Huang Wen-Ching Shih I-Nan Lin Chi-Young Lee The 3D-tomography of the nano-clusters formed by Fe-coating and annealing of diamond films for enhancing their surface electron field emitters AIP Advances |
author_facet |
Huang-Chin Chen Shen-Chuan Lo Li-Jiaun Lin Pin-Chang Huang Wen-Ching Shih I-Nan Lin Chi-Young Lee |
author_sort |
Huang-Chin Chen |
title |
The 3D-tomography of the nano-clusters formed by Fe-coating and annealing of diamond films for enhancing their surface electron field emitters |
title_short |
The 3D-tomography of the nano-clusters formed by Fe-coating and annealing of diamond films for enhancing their surface electron field emitters |
title_full |
The 3D-tomography of the nano-clusters formed by Fe-coating and annealing of diamond films for enhancing their surface electron field emitters |
title_fullStr |
The 3D-tomography of the nano-clusters formed by Fe-coating and annealing of diamond films for enhancing their surface electron field emitters |
title_full_unstemmed |
The 3D-tomography of the nano-clusters formed by Fe-coating and annealing of diamond films for enhancing their surface electron field emitters |
title_sort |
3d-tomography of the nano-clusters formed by fe-coating and annealing of diamond films for enhancing their surface electron field emitters |
publisher |
AIP Publishing LLC |
series |
AIP Advances |
issn |
2158-3226 |
publishDate |
2012-09-01 |
description |
The Fe-coating and H2-annealed processes markedly increased the conductivity and enhanced the surface electron field emission (s-EFE) properties for the diamond films. The enhancement on the s-EFE properties for the diamond films is presumably owing to the formation of nano-graphite clusters on the surface of the films via the Fe-to-diamond interaction. However, the extent of enhancement varied with the granular structure of the diamond films. For the microcrystalline (MCD) films, the s-EFE process can be turned on at (E0)MCD = 1.9 V/μm, achieving a large s-EFE current density of (Je)MCD = 315 μA/cm2 at an applied field of 8.8 V/μm. These s-EFE properties are markedly better than those for Fe-coated/annealed ultrananocrystalline diamond (UNCD) films with (E0)UNCD = 2.0 V/μm and (Je)UNCD = 120 μA/cm2. The transmission electron microscopy showed that the nano-graphite clusters formed an interconnected network for MCD films that facilitated the electron transport more markedly, as compared with the isolated nano-graphitic clusters formed at the surface of the UNCD films. Therefore, the Fe-coating/annealing processes improved the s-EFE properties for the MCD films more markedly than that for the UNCD films. The understanding on the distribution of the nano-clusters is of critical importance in elucidating the authentic factor that influences the s-EFE properties of the diamond films. Such an understanding is possible only through the 3D-tomographic investigations. |
url |
http://dx.doi.org/10.1063/1.4748865 |
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