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Titlebook: Ultrathin Carbon-Based Overcoats for Extremely High Density Magnetic Recording; Reuben Jueyuan Yeo Book 2017 Springer Nature Singapore Pte

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Introduction,novel processes. The suitability of graphene as an overcoat for HDD media is also explored. The improved functional properties of these overcoats are subsequently explained in terms of their microstructure and interfacial bonding.
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Overcoat Fabrication and Characterization,deposition of ultrathin carbon overcoats: (1) magnetron sputtering, (2) filtered cathodic vacuum arc (FCVA) and (3) plasma-enhanced chemical vapor deposition (PECVD)-based techniques. These three carbon overcoat fabrication techniques are discussed in this chapter.
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Wear-Durable Protective Overcoats for Functional Tape Heads,tic spacing. In addition, tribo-electrochemical reactions can also occur through direct contact between the read/write elements and the tape material, resulting in the formation of metallic deposits. Hence, the application of an ultrathin, wear durable, electrically insulating and chemically inert o
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Book 2017ticular focus on hard disk drives (HDDs) and tape drives. These findings shed new light on how the microstructure and interfacial chemistry of these sub-20 nm overcoats can be engineered at the nanoscale regime to obtain enhanced properties for wear, thermal and corrosion protection – which are crit
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Optimization of Ultrathin Carbon Overcoats on Hard Disk Media, properties of the COC. In this chapter, the effects of C. ion energy, thickness and the extent of atomic mixing on the microstructural and functional properties of ultrathin COCs are discussed, and how the FCVA process can be optimized to achieve the most desirable functional properties for the media.
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