Reprint

10th Anniversary of Coatings: Invited Papers in "Surface Characterization, Deposition and Modification" Section

Edited by
February 2024
396 pages
  • ISBN978-3-7258-0261-6 (Hardback)
  • ISBN978-3-7258-0262-3 (PDF)

This book is a reprint of the Special Issue 10th Anniversary of Coatings: Invited Papers in "Surface Characterization, Deposition and Modification" Section that was published in

Chemistry & Materials Science
Engineering
Summary

First issued in 2014, Coatings is celebrating its 10th anniversary. In this first decade, the journal has managed to attract and publish numerous innovative works related to various domains and disciplines in which the application of coatings gives an added value.“Surface Characterization, Deposition and Modification” is one of the biggest sections of Coatings. Since its inception, numerous papers have been published in this section. The scope of surface characterization, deposition and modification comprises various coating deposition processes and surface treatments, as well as the characterization of microstructural properties and performance studies on modified or treated surfaces. Both experimental and theoretical studies are included in this section. Moreover, the development of novel characterization devices that are specifically designed to evaluate the properties, structural and otherwise, of modified surfaces are welcome.This Special Issue was established to mark the 10th anniversary of Coatings. It is devoted to the swift publication of scientific papers pertaining to surface and interface engineering that modifies the superficial properties of materials in order to enhance their protection in demanding contact conditions, and/or to improve their functional performance.

Format
  • Hardback
License and Copyright
© 2022 by the authors; CC BY-NC-ND license
Keywords
ductile cast iron; sulfur diffusion; structure; graphite degeneration; surface layer; microwave-absorbing; gradient composites; nonwoven; reflection loss; aluminum dross; sintered brick; mechanical strength; orthogonal test; process parameter; stone protection; monument biodeterioration; Si nanocontainers; antifouling; zosteric sodium salt; TiO2 nanoparticles; superhydrophobic; deposition process; corrosion properties; copper; equivalent circuit modeling; amorphous semiconductors; optical properties; dielectric function; thin-film characterization; Tauc–Lorentz model; Tauc–Lorentz–Urbach model; high nitrogen content aluminum ash; non-fired brick; mix proportion; mechanical property; carbon dioxide accumulation; wood fire-protection; calcium carbonate; in situ mineralization; wood protection; surface-enhanced Raman spectroscopy; MoS2; two-dimensional materials; charge transfer; ion exchange membrane; PTFE; Nafion; magnetron sputtering; vanadium redox flow battery; calcium oxide; nanoparticles; surface-enhanced Raman scattering; oyster shells; biocompatible; high-nitrogen-content aluminum dross; AlN; hydrolysis parameters; content prediction; modified formula; self-cleaning; TiO2/Cdots; protective films; cultural heritage conservation; photocatalysts; sunlight irradiation; collision frequency; electric spark; femtosecond laser; groove texture; tribology; aluminum-ion battery; metal coating; solid-solution alloy; dendrite-free anode; single-layer graphene; mechanical properties; thermal stability; biocompatibility; high nitrogen aluminum dross; additive; nitrogen removal; process parameter; Prussian blue analogues; cathode materials; aqueous zinc-ion batteries; hybrid ion electrolyte; nano-impact; micro-impact; fatigue; fracture; sustainable coating; hydrophobic coating; diagnostic protocol; wood conservation; wood finishing; active energy elements (EAE); active thermal protection (ATP); thermal barrier (TB); renewable energy sources (RES); heat/cold accumulation; p-type semiconductor; copper oxide; thin film; sol-gel deposition; electrodeposition; photoelectrochemical water splitting; cheese cutting; tools; micro-blasting; fatigue; iron-based amorphous coating; ceramic; corrosion; SRB; Ni-Zn microbattery; NiCo alloy; reconstruction; high rate; high capacity

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