The countless applications of plasma polymerization, from housekeeping to nanotechnology, and the generally weak understanding of the mechanisms of this process dictate the need to study its theoretical foundations. This book comprises a detailed description of the formation of local mechanisms of polymer synthesis in the main zones of glow discharge by electrophysical collision-type processes specific to each zone. The zonal mechanisms are so different that the local polymerization rates can differ by hundreds of times. The most powerful cathode mechanism creates polymer films with signs of radiation damage to the structure: abnormal over-compaction and associated compression stresses, microcraters from ion shocks and micro-explosions. The book will be of interest to researchers, postgraduates and students in plasma chemistry and plasma technology.
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Product Details
Dimensions: 148 x 212mm
Publication Date: 01 Oct 2024
Publisher: Cambridge Scholars Publishing
Publication City/Country: United Kingdom
Language: English
ISBN13: 9781036407438
About Vladislav Zyn
Vladislav Zyn graduated from the Kuibyshev Pedagogical Institute's Department of Physics Russia. He was a postgraduate at the Department of Solid State Electronics at Leningrad State University (LSU) Russia. He completed his PhD in solid state physics at LSU and his doctorate in chemical physics at the Karpov Research Center on Physical Chemistry Russia. He has worked as an assistant an Associate Professor a Full Professor and both an official and (more often) unofficial supervisor of graduates and postgraduates at Samara State Technical University (SSTU)'s Department of Physics Russia where he created a successful scientific direction for the comprehensive study of glow-discharge polymerization and headed a research group 60% of which became professors. During his time there he taught courses on physics nuclear energy applications concepts of modern natural science laser physics and technology solid state physics the effect of powerful energy flows on matter and the physical foundations of microelectronics. He is the author of 120 publications including 2 monographs and 1 textbook.