33 Best Books on Thin Film Technology

We have compiled a list of the Best Reference Books on Thin Film Technology, which are used by students of top universities, and colleges. This will help you choose the right book depending on if you are a beginner or an expert. Here is the complete list of Thin Film Technology Books with their authors, publishers, and an unbiased review of them as well as links to the Amazon website to directly purchase them. If permissible, you can also download the free PDF books on Thin Film Technology below.

1. Thin Film Physics and Technology

 
1."Thin Film Phenomena" by K L Chopra
“Thin Film Phenomena” Book Review: This book provides a comprehensive and easy-to-understand overview of key theories and outlooks related to thin film growth. It explains the process and importance of thin film growth and covers essential topics such as chemical vapor deposition, film growth, surface energy, and critical nucleus physical vapor deposition.

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2."Thin Film Deposition: Principles and Practice" by D L Smith
“Thin Film Deposition: Principles and Practice” Book Review: The aim of this book is to provide a clear presentation of the fundamentals of the subject by covering all the basic concepts and prerequisites. It adopts a student-friendly style and teaches practical subjects, emphasizing growth-oriented techniques that employ various methods. The book focuses on several key topics, including Chemical Vapor Deposition, Physical Vapor Deposition, Chemical Vapor Deposition, Reactor Gadolinium Gallium Garnet, and Silicon Tetrachloride. The language used in the book is easy to understand for students and it offers useful resources for exploring the contents of each chapter.

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3."Physical Vapour Deposition" by J E Mahan
“Physical Vapour Deposition” Book Review: This book offers a unified treatment of the theories, data, and technologies underlying physical vapor deposition methods. It presents a cohesive treatment of the fundamentals and applications of the topic, including kinetic theory of gases, sputtering, adsorption and condensation, Thermal evaporation, high-vacuum pumping dynamics, sputtering discharges, simplified collisional model of sputter yield for pure element targets, and pulsed laser deposition techniques. The book contains numerous solved and unsolved exercises to allow for further exploration of the chapter’s contents and is dynamic and engaging.

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4."Nanoparticles and Nanostructured Films" by J H Fendler
“Nanoparticles and Nanostructured Films” Book Review: This book is a useful resource for understanding the properties and applications of nanomaterials. The book covers a range of topics, including the synthesis and characterization of nanoparticles, the fabrication of nanostructured films, and the properties and applications of these materials. The chapters provide a comprehensive overview of the subject matter, including important techniques such as chemical and physical vapor deposition. This book is an invaluable resource for students and researchers interested in the field of nanotechnology.

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5."Thin Films: Organic Thin Films and Surfaces" by Abraham Ulman
“Thin Films: Organic Thin Films and Surfaces” Book Review: This book is written in student-friendly language and offers high-quality material to study the properties of various thin film materials and systems. It covers modern aspects of the topic to reflect the development of science and covers most of the aspects of both inorganic and organic thin films in both their theoretical and technological aspects. It is an easy-to-read textbook that incorporates all the topics essential for detailed knowledge of the subject.

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6."Thin Film Structures in Energy Applications" by Suresh Babu Krishna Moorthy
“Thin Film Structures in Energy Applications” Book Review: This book offers a highly readable, clear, and concise discussion of various topics related to energy production and storage using thin film technology. Its key focus is to provide a clear understanding of the topics covered, including the fundamentals, processing, and characterization of thin film applications. The book delves into important topics such as deposition, growth aspects, and characterization of thin films, as well as coatings for energy applications. Other topics include ternary and quaternary semiconducting compounds thin film solar cells, organic semiconductors, titania nano-architectures for energy, thin film electrolytes for solid oxide fuel cells, thin film thermoelectric materials for sensor application, electroluminescent thin film, and thin films for energy efficiency. The book’s engaging style makes it a dynamic resource for students and researchers alike.

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7."Solid Surfaces, Interfaces and Thin Films" by Hans Lüth
“Solid Surfaces, Interfaces and Thin Films” Book Review: This book is presented in a familiar and concrete setting and is relatively easy to understand for students. It focuses on interface and thin-film physics and covers their vibronic and electronic properties, experimental and theoretical aspects of surface, and fundamentals of adsorption. The book covers topics such as modern information technology and nanostructure research, electronic surface and interface states, giant magnetoresistance and spin-transfer torque mechanism, semiconductor space charge layers and heterostructures, and a dedicated chapter to collective phenomena at interfaces and in thin films, which includes superconductivity and magnetism.

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8."Thin Films by Chemical Vapour Deposition (Thin Films Science and Technology)" by C E Morosanu and G Siddall
“Thin Films by Chemical Vapour Deposition (Thin Films Science and Technology)” Book Review: The latest edition of this book has been thoroughly updated to reflect recent advancements in the field. It is a highly accessible textbook that covers all the essential topics needed for a comprehensive understanding of the subject. The book provides a comprehensive overview of Chemical Vapour Deposition (CVD) and covers important topics such as the evolution of CVD films, fundamentals of CVD, and various deposition techniques including electrolytic, plasma, vacuum, liquid-phase, solid-phase, and chemical vapour deposition. The engaging style of this book makes it a dynamic resource for students and researchers alike.

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9."Semiconductor Materials for Solar Photovoltaic Cells (Springer Series in Materials Science)" by M Parans Paranthaman and Winnie Wong-Ng
“Semiconductor Materials for Solar Photovoltaic Cells (Springer Series in Materials Science)” Book Review: This book provides a comprehensive coverage of standard and advanced topics in an easily accessible manner. Starting from elementary concepts, it progresses seamlessly to advanced areas, including Solar Cell Characterization, 3D Geometries, and Organic Photovoltaics. The presentation is familiar, with a focus on concrete examples, making it relatively easy for students to understand. It also includes detailed descriptions of other topics such as Earth-Abundant CZTSSe Solar Cells, ZnO Doping and Defect Engineering, Hydrogen Production, and Nanophase Engineering of Organic Semiconductor-Based Solar Cells.

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10."Thin Films and Heterostructures for Oxide Electronics (Multifunctional Thin Film Series)" by Satishchandra B Ogale
“Thin Films and Heterostructures for Oxide Electronics (Multifunctional Thin Film Series)” Book Review: This textbook offers clear and concise explanations of all the essential topics needed for in-depth understanding of the subject matter. It is highly readable, making the course more accessible and useful. The content covers a wide range of topics, including Nanoscale Phenomena in Ferroelectric Thin Films, High-K Candidates for use as the Gate Dielectric in Silicon MOSFETs, and Science and Technology of High-Dielectric Constant(K) Thin Films for Next Generation CMOS. The book also delves into advanced topics such as Materials Requirements for Magnetic Random-Access Memory (MRAM) Devices, Diluted Magnetic Oxide Systems, and Epitaxial Growth and Properties of Magnetically Doped Ti02. By demonstrating the interplay between these fields, the book achieves its aim of presenting a comprehensive understanding of the subject.

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2. Fundamentals of Surface and Thin Film Analysis

 
1."Fundamentals of Surface Thin Film Analysis" by Leonard C Feldman
“Fundamentals of Surface Thin Film Analysis” Book Review: This book is a useful guide for those interested in understanding surface thin film analysis techniques. The book covers a wide range of topics, including surface morphology, crystallography, spectroscopy, and microscopy. Chapters include surface preparation techniques, scanning probe microscopy, X-ray diffraction, and electron microscopy. The book is well-written and comprehensive, making it an invaluable resource for researchers and engineers in the field of surface thin film analysis.

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2."Multicomponent and Multilayered Thin Films for Advanced Microtechnologies: Techniques, Fundamentals and Devices (Nato Science Series E:)" by O Auciello and Jürgen Engemann
“Multicomponent and Multilayered Thin Films for Advanced Microtechnologies: Techniques, Fundamentals and Devices (Nato Science Series E:)” Book Review: The book is aimed at postdoctoral and graduate students, covering the synthesis of various thin film types, including superconducting, conducting, semiconducting, and insulating films. It includes lectures and contributing papers covering scientific and technological aspects and a broad range of topics such as vacuum-decomposition techniques, synthesis processing, and characterization of multicomponent oxide devices.

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3."Fundamentals of Nanoscale Film Analysis" by Terry L Alford and L C Feldman
“Fundamentals of Nanoscale Film Analysis” Book Review: This book is an informative guide for students and researchers interested in nanoscale film analysis techniques. The book covers a wide range of topics, including the basics of thin film growth, structure, and properties, as well as advanced techniques such as X-ray scattering, electron microscopy, and spectroscopy. Chapters cover surface preparation techniques, atomic force microscopy, nanoindentation, and scanning electron microscopy. This book is an ideal resource for those seeking a comprehensive understanding of nanoscale film analysis.

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4."Magnetic Multilayers and Giant Magnetoresistance: Fundamentals and Industrial Applications (Springer Series in Surface Sciences)" by H A M van den Berg and R Coehoorn
“Magnetic Multilayers and Giant Magnetoresistance: Fundamentals and Industrial Applications (Springer Series in Surface Sciences)” Book Review: This book covers both experimental and theoretical methods, offering a comprehensive overview of the latest research in the field. It provides readers with vast knowledge and key references relating to original work. Additionally, it discusses the unique micromagnetic, magneto-optic, and magneto-electronic phenomena that cannot be determined by conventional techniques, and offers a balanced explanation of the fundamentals and technological applications of the latest devices available.

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5."High-Pressure Crystallography: From Fundamental Phenomena to Technological Applications (NATO Science for Peace and Security Series B: Physics and Biophysics)" by Przemyslaw Dera and Elena Boldyreva
“High-Pressure Crystallography: From Fundamental Phenomena to Technological Applications (NATO Science for Peace and Security Series B: Physics and Biophysics)” Book Review: The primary focus of this book is to elucidate the lectures delivered at the 2009 International School on High-Pressure Crystallography. The text delves into the study of crystallography under high pressure and establishes its connection with the compressed state of matter. The book offers comprehensive insight into the experimental and theoretical techniques employed to enhance understanding of the phenomenon. Its coverage encompasses key topics in physics, chemistry, materials science, and engineering. Furthermore, the book also sheds light on its applications in geology, planetary sciences, biology, and medicine.

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6."Thin-Film Solar Cells: Next Generation Photovoltaics and Its Applications (Springer Series in Photonics)" by Yoshihiro Hamakawa
“Thin-Film Solar Cells: Next Generation Photovoltaics and Its Applications (Springer Series in Photonics)” Book Review: This book addresses the current energy production problem by presenting thin-film solar cells as an effective solution. It covers a vast range of topics, including the scientific and technological aspects of thin film semiconductors, deposition technologies, growth mechanisms, and the development of large-area solar cell modules and recent photovoltaic systems.

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7."Characterization of Polymer Surfaces and Thin Films (Progress in Colloid and Polymer Science)" by K Grundke and M Stamm
“Characterization of Polymer Surfaces and Thin Films (Progress in Colloid and Polymer Science)” Book Review: This book comprises of papers presented at the 10th Dresden Polymer Discussion in 2005, which elucidate the characterization of polymer surfaces and thin films. The text also delves into the application of sensitive techniques in polymer surface and thin film characterization. In addition, the book provides detailed examples of technologically significant materials and process development.

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8."Surface and Thin Film Analysis: A Compendium of Principles, Instrumentation, and Applications" by Gernot Friedbacher and Henning Bubert
“Surface and Thin Film Analysis: A Compendium of Principles, Instrumentation, and Applications” Book Review: The target audience of this book comprises of material scientists, analytical chemists, and professionals engaged in the biotechnological industry. It offers a comprehensive overview of various techniques employed in practical applications for surface and thin film analysis. The book sheds light on techniques such as Scanning Near-field Optical Microscopy (SNOM), Field Ion Microscopy (FIM), Atom Probe (AP), and Sum Frequency Generation (SFG).

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9."Nanostructured Thin Films and Surfaces (Nanomaterials for Life Sciences (VCH))" by Challa S S R Kumar
“Nanostructured Thin Films and Surfaces (Nanomaterials for Life Sciences (VCH))” Book Review: This book serves as a reference for scientists in a variety of fields, including biology, chemistry, material science, physics, bioengineering, and medicine, as well as for students in academic and fundamental research. It provides an in-depth overview of all types of nanomaterials and their uses in life sciences, including fundamentals, synthesis and characterization strategies, structure-property relationships, and biomedical applications.

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10."Material Science of Thin Films - Deposition and Structure" by Ohring
“Material Science of Thin Films – Deposition and Structure” Book Review: This book focuses on engineering materials from a thin film and coating standpoint, targeting students and researchers in the field. It emphasizes deposition techniques, including atomic layer deposition and high impulse magnetron sputtering, and provides information on recent technological developments. Other topics covered include filtered cathodic arcs, nanorod growth by the vapor-liquid-solid process, carbon nanotubes, and new quantitative kinetic nucleation models.

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11."The Optical Properties of Thin Solid Films (Dover Books on Physics)" by O S Heavens
“Optical Properties of Thin Solid Films” Book Review: This book is focused on exploring the formation, structure, optical properties, and applications of thin films, with particular emphasis on the reasons behind their anomalous optical behavior. The initial chapters delve into the physical nature of thin films, their formation, and structure, with a comprehensive discussion on the commonly used thermal evaporation and sputtering processes. The equipment employed for observing thin films is also thoroughly diagrammed and explained. The later chapters explore the effectiveness of alkaline and metallic thin solid films in transmitting and reflecting light, with detailed explanations of the methods utilized to measure film thickness. The book also provides Maxwell’s equations for determining the intensity of light passing through different film layers, along with other methods such as the refractometer and interferometer. The text includes both theoretical and practical details, with minimal background information given on differential equations to facilitate a better understanding of the theoretical portions.

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3. Mechanical Behavior of Thin Films

 
1."Thin Film Materials: Stress, Defect Formation and Surface Evolution" by L B Freund and S Suresh
Book Review: This book provides a comprehensive exploration of stress, defect formation, and surface evolution concepts in thin films, and strikes a balance between theory, experiment, simulation, and homework problems. It is an invaluable resource for both graduate and undergraduate courses on thin films, covering various concepts related to thin films from processing to performance. The book includes chapters on epitaxy, surface modification, thin film materials and their applications, among others.

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2."Materials Science of Thin Films" by M Ohring
Book Review: This book delves into the science and technology of thin films and coatings, covering topics such as physical and chemical vapor deposition processes, nucleation, growth, stress, diffusion, reaction, structural and chemical characterization techniques, coating applications, magnetic and optical recording materials, and more. It also includes chapters on epitaxy, surface modification, thin film materials and their applications, as well as discussions on chemical vapor deposition, diffusion, reactions, and stress in films.

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3."Relationship Between Structure and Magnetic Behaviour in ZnO-Based Systems" by Clara Guglieri
“Relationship Between Structure and Magnetic Behaviour in ZnO-Based Systems” Book Review: This book is a valuable resource for students and researchers interested in the properties and behavior of ZnO nanoparticles, with a special emphasis on X-ray absorption spectroscopy (XAS) and X-ray magnetic circular dichroism (XMCD) concepts. It covers 3-D states of the metallic cation and O K-edge XMCD, as well as concepts of ferromagnetism in oxide semiconductors.

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4."Thin Film Fundamentals" by A Goswami
“Thin Film Fundamentals” Book Review: This book covers a wide range of topics related to thin films and is an indispensable reference for students and researchers. It explores the fundamentals of thin films, including nucleation, film structures, growth processes, phase transitions, and film behavior under various conditions. Additionally, it highlights differences between thin films and bulk materials, such as surface states, contact potential, high defect concentration, creation of new energy levels, in-homogeneities, and discontinuities properties. The text is enriched with numerous illustrations, examples, and practical applications.

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5."Transient Effects in Friction: Fractal Asperity Creep (Engineering Materials)" by Andreas Goedecke
“Transient Effects in Friction: Fractal Asperity Creep (Engineering Materials)” Book Review: This book is an essential resource for students, researchers, and scientists interested in friction. It investigates the behavior and properties of macroscopic friction surfaces, explores techniques for finite element analysis of surface asperities, describes calculation methods for time-dependent real contact, and presents various experimental results of transient friction.

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6."Thin-Film Deposition: Principles and Practice" by Donald L Smith
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7."Powder Consolidation Using Cold Spray: Process Modeling and Emerging Applications" by Atieh Moridi
“Powder Consolidation Using Cold Spray: Process Modeling and Emerging Applications” Book Review: This book covers various aspects of cold spray modeling and its applications. It is useful for both students and researchers. The book begins by examining the fundamentals of cold spray modeling, including erosion velocities, material jet formation, and macroscopic defects. Plastic deformation concepts are used to explain the phenomenon of interface bonding, while interparticle boundaries and splat boundary cracking are given special attention. The book also discusses several applications of cold spray technology, including the repair of damaged parts, fatigue behavior of coatings, and the manufacturing of porous structures under subcritical conditions.

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8."Preparation of Thin Films" by Joy George
“Preparation of Thin Films” Book Review: This book discusses various manufacturing and processing techniques for thin films, which are of particular interest to students and researchers. It covers the preparation of thin films from a wide range of materials, including elements, compounds, alloys, ceramics, and semiconductors. Special emphasis is given to high vacuum and chemical deposition methods. The book also highlights the manufacturing of high-temperature superconducting oxide thin films.

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9."Practical Design and Production of Thin Films (Optical Engineering)" by Ronald R Willey
“Practical Design and Production of Thin Films (Optical Engineering)” Book Review: This book focuses on different aspects of the processing and production of thin films. It is a valuable resource for advanced-level students and researchers in the field. The book covers the basics of thin film production, including the equipment and materials needed. It also describes the processes used in manufacturing thin film optical coatings and emphasizes the importance of controlling sensitivity and repeatability of films.

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10."Chemical Solution Deposition of Functional Oxide Thin Films" by Theodor Schneller and Marija Kosec
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11."Handbook of Thin Film Technology" by Hartmut Frey and Hamid R Khan
“Handbook of Thin Film Technology” Book Review: This book covers a range of topics related to coatings, including preparation, characterization, and applications. It delves into various deposition techniques that rely on vacuum and plasma processes, and it also explains methods for surface and thin film analysis. The book provides detailed descriptions of coating thickness, as well as the structural, optical, electrical, mechanical, and magnetic properties of films. Additionally, it explores various applications of nanoparticle-based films. With its comprehensive coverage, this book serves as a valuable reference for both students and professionals in the field.

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12."Functional Thin Films and Nanostructures for Sensors: Synthesis, Physics and Applications (Integrated Analytical Systems)" by Anis Zribi and Jeffrey Fortin
“Functional Thin Films and Nanostructures for Sensors: Synthesis, Physics and Applications (Integrated Analytical Systems)” Book Review: This is a comprehensive book covering the synthesis, physics, and applications of functional thin films and nanostructures for sensors. The book is divided into 14 chapters, covering topics such as the fundamentals of thin film and nanostructure synthesis, characterization techniques, and applications in areas such as gas sensing, biosensing, and energy conversion. The book is an ideal resource for researchers and professionals interested in the field of sensor technology.

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We have put a lot of effort into researching the best books on Thin Film Technology and came out with a recommended list and their reviews. If any more book needs to be added to this list, please email us. We are working on free pdf downloads for books on Thin Film Technology and will publish the download link here. Fill out this Thin Film Technology books pdf download" request form for download notification.

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