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August 16, 2025Coatings60 citationsOpen Access

Recent Advances in Magnetron Sputtering: From Fundamentals to Industrial Applications

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PBPrzemysław BorowskiJMJarosław Myśliwiec

Key Points

  • Magnetron sputtering shows improved film properties and high deposition rates, which enhance industrial manufacturing processes.
  • Key techniques include reactive sputtering and high-power impulse magnetron sputtering, leading to more efficient coatings applications.
  • The review covers the role of MSVD in the automotive industry, achieving durable coatings for aesthetic and functional use.
  • Sustainable techniques emerge from the transition away from traditional electroplating methods, fostering environmentally friendly manufacturing.

Abstract

Magnetron Sputter Vacuum Deposition (MSVD) has undergone significant advancements since its inception. This review explores the evolution of MSVD, encompassing its fundamental principles, various techniques (including reactive sputtering, pulsed magnetron sputtering, and high-power impulse magnetron sputtering), and its wide-ranging industrial applications. While detailing the advantages of high deposition rates, versatility in material selection, and precise control over film properties, the review also addresses inherent challenges such as low target utilization and plasma instability. A significant portion focuses on the crucial role of MSVD in the automotive industry, highlighting its use in creating durable, high-quality coatings for both aesthetic and functional purposes. The transition from traditional electroplating methods to more environmentally friendly MSVD techniques is also discussed, emphasizing the growing demand for sustainable manufacturing processes. This review concludes by summarizing the key advancements, remaining challenges, and potential future trends in magnetron sputtering technologies.

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Cite This Study

Borowski et al. (2025) studied this question.

synapsesocial.com/papers/68a368710a429f797332d0f5https://doi.org/10.3390/coatings15080922
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