Intrinsic mechanical properties of ultra-thin amorphous carbon layers
نویسندگان
چکیده
In this work, we extracted the film’s hardness (HF) of ultra-thin diamond-like carbon layers by simultaneously taking into account the tip blunting and the substrate effect. As compared to previous approaches, which did not consider tip blunting, this resulted in marked differences (30–100%) for the HF value of the thinner carbon coatings. We find that the nature of the substrate influences this intrinsic film parameter and hence the growth mechanisms. Moreover, the HF values generally increase with film thickness. The 10 nm and 50 nm thick hydrogenated amorphous carbon (a-C:H) films deposited onto Si have HF values of, respectively, 26 GPa and 31 GPa whereas the 10 nm and 50 nm thick tetrahedral amorphous carbon (t-aC) films deposited onto Si have HF values of, respectively, 29 GPa and 38 GPa. Both the a-C:H and t-aC materials also show higher density and refractive index values for the thicker coatings, as measured, respectively by X-ray reflectometry and optical profilometry analysis. However, the Raman analysis of the a-C:H samples show bonding characteristics which are independent of the film thickness. This indicates that in these ultra-thin hydrogenated carbon films, the arrangement of sp clusters does not relate directly to the hardness of the film. # 2007 Elsevier B.V. All rights reserved.
منابع مشابه
Diamond-like carbon for magnetic storage disks
Diamond-like carbon films form a critical protective layer on magnetic hard disks and their reading heads. The ultimate limit to storage density is the super-paramagnetic limit, where the thermal energy is able to overcome the coercive energy of the magnetic bit. Perpendicular recording should allow storage densities up to ;1 Tbityinch . This requires the read head to approach 2 closer to the m...
متن کاملElastic constants and structural properties of nanometre-thick diamond- like carbon films
Carbon coatings of thickness down to 2 nm are needed to increase the storage density in magnetic hard disks and reach the 100-Gbitsyinch target. We show that the combination of surface Brillouin scattering, X-ray reflectivity and Raman spectroscopy 2 measurements allow us to measure the mechanical and structural properties of ultra-thin tetrahedral amorphous carbon films. Densities up to 2.8 gy...
متن کاملDeformation of Ultra-Thin Diamond-Like Carbon Coatings Under Combined Loading on a Magnetic Recording Head
Ultra-thin diamond-like carbon (DLC) coatings are used in precision engineering applications, such as magnetic storage devices, to protect intricate structures from wear and corrosion. A DLC coating typically consists of hard amorphous carbon in combination with an interlayer such as silicon (Si), to improve adhesion to the substrate material. Deformation and delamination of these coatings, eve...
متن کاملElectrical Transduction of Graphene NEMS Resonator
Graphene, an atomically thin sheet consisting of only one layer of carbon atoms, attracts intensive research interest since its recent discovery [1], not only due to the simple fabrication process and its unique electronic properties, but also because of the ultimate mechanical strength as well [2], especially for nanoelectromechanical system (NEMS) applications. Here we report the preparation ...
متن کاملUltra-thin carbon layer for high density magnetic storage devices
Storage density is presently doubling every year. This requires the read head to approach closer to the magnetic layer, and ever-thinner layers of carbon. Film thickness below 2 nm and roughness well below 1 nm are needed for the storage of ;1 Tby in . Here we present an analytical and functional characterisation of ultra-thin carbon nitride and pure carbon films produced by 2 magnetron sputter...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2006