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  4. Influence of ion energy and substrate temperature on the optical and electronic properties of tetrahedral amorphous carbon (ta-C) films
 
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Influence of ion energy and substrate temperature on the optical and electronic properties of tetrahedral amorphous carbon (ta-C) films

Journal
Journal of Applied Physics
Journal Volume
81
Journal Issue
1
Pages
139-145
Date Issued
1997
Author(s)
Chhowalla M.
Robertson J.
Chen C.W.
Silva S.R.P.
Davis C.A.
Amaratunga G.A.J.
Milne W.I.
CHUN-WEI CHEN  
DOI
10.1063/1.364000
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0000560715&doi=10.1063%2f1.364000&partnerID=40&md5=b675a8f5e0d2f63202f50537f9e4aa82
https://scholars.lib.ntu.edu.tw/handle/123456789/432894
Abstract
The properties of amorphous carbon (a-C) deposited using a filtered cathodic vacuum arc as a function of the ion energy and substrate temperature are reported. The sp3 fraction was found to strongly depend on the ion energy, giving a highly sp3 bonded a-C denoted as tetrahedral amorphous carbon (ta-C) at ion energies around 100 eV. The optical band gap was found to follow similar trends to other diamondlike carbon films, varying almost linearly with sp2 fraction. The dependence of the electronic properties are discussed in terms of models of the electronic structure of a-C. The structure of ta-C was also strongly dependent on the deposition temperature, changing sharply to sp2 above a transition temperature, T1, of ≈200 °C. Furthermore, T1 was found to decrease with increasing ion energy. Most film properties, such as compressive stress and plasmon energy, were correlated to the sp3 fraction. However, the optical and electrical properties were found to undergo a more gradual transition with the deposition temperature which we attribute to the medium range order of sp2 sites. We attribute the variation in film properties with the deposition temperature to diffusion of interstitials to the surface above T1 due to thermal activation, leading to the relaxation of density in context of a growth model.
SDGs

[SDGs]SDG7

Publisher
American Institute of Physics Inc.
Type
journal article

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