Transport Properties of Amorphous Silicon Thin Films Fabricated by LPCVD

Transport Properties of Amorphous Silicon Thin Films Fabricated by LPCVD PDF Author: Ning Du
Publisher:
ISBN:
Category : Amorphous semiconductors
Languages : en
Pages : 220

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Transport Properties of Amorphous Silicon Thin Films Fabricated by LPCVD

Transport Properties of Amorphous Silicon Thin Films Fabricated by LPCVD PDF Author: Ning Du
Publisher:
ISBN:
Category : Amorphous semiconductors
Languages : en
Pages : 220

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Electronic State Distribution and Some Transport Properties of Amorphous Silicon Thin Films

Electronic State Distribution and Some Transport Properties of Amorphous Silicon Thin Films PDF Author: Abdessalam Yacoub Ghaith
Publisher:
ISBN:
Category : Physical sciences
Languages : en
Pages :

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Transport Properties of Hydrogenated Amorphous Silicon Based Thin Films

Transport Properties of Hydrogenated Amorphous Silicon Based Thin Films PDF Author: Fuchao Wang
Publisher:
ISBN:
Category :
Languages : de
Pages : 190

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Thin Films by Chemical Vapour Deposition

Thin Films by Chemical Vapour Deposition PDF Author: C.E. Morosanu
Publisher: Elsevier
ISBN: 1483291731
Category : Technology & Engineering
Languages : en
Pages : 720

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Book Description
The explosive growth in the semiconductor industry has caused a rapid evolution of thin film materials that lend themselves to the fabrication of state-of-the-art semiconductor devices. Early in the 1960s an old research technique named chemical vapour phase deposition (CVD), which has several unique advantages, developed into the most widely used technique for thin film preparation in electronics technology. In the last 25 years, tremendous advances have been made in the science and technology of thin films prepared by means of CVD. This book presents in a single volume, an up-to-date overview of the important field of CVD processes which has never been completely reviewed previously. Contents: Part I. 1. Evolution of CVD Films. Introductory remarks. Short history of CVD thin films. II. Fundamentals. 2. Techniques of Preparing Thin Films. Electrolytic deposition techniques. Vacuum deposition techniques. Plasma deposition techniques. Liquid-phase deposition techniques. Solid-phase deposition techniques. Chemical vapour conversion of substrate. Chemical vapour deposition. Comparison between CVD and other thin film deposition techniques. 3. Chemical Processes Used in CVD. Introduction. Description of chemical reactions used in CVD. 4. Thermodynamics of CVD. Feasibility of a CVD process. Techniques for equilibrium calculations in CVD systems. Examples of thermodynamic studies of CVD systems. 5. Kinetics of CVD. Steps and control type of a CVD heterogeneous reaction. Influence of experimental parameters on thin film deposition rate. Continuous measurement of the deposition rate. Experimental methods for studying CVD kinetics. Role of homogeneous reactions in CVD. Mechanism of CVD processes. Kinetics and mechanism of dopant incorporation. Transport phenomena in CVD. Status of kinetic and mechanism investigations in CVD systems. 6. Measurement of Thin Film Thickness. Mechanical methods. Mechanical-optical methods. Optical methods. Electrical methods. Miscellaneous methods. 7. Nucleation and Growth of CVD Films. Stages in the nucleation and growth mechanism. Regimes of nucleation and growth. Nucleation theory. Dependence of nucleation on deposition parameters. Heterogeneous nucleation and CVD film structural forms. Homogeneous nucleation. Experimental techniques. Experimental results of CVD film nucleation. 8. Thin Film Structure. Techniques for studying thin film structure. Structural defects in CVD thin films. 9. Analysis of CVD Films. Analysis techniques of thin film bulk. Analysis techniques of thin film surfaces. Film composition measurement. Depth concentration profiling. 10. Properties of CVD Films. Mechanical properties. Thermal properties. Optical properties. Photoelectric properties. Electrical properties. Magnetic properties. Chemical properties. Part III. 11. Equipment and Substrates. Equipment for CVD. Safety in CVD. Substrates. 12. Preparation and Properties of Semiconducting Thin Films. Homoepitaxial semiconducting films. Heteroepitaxial semiconducting films. 13. Preparation and Properties of Amorphous Insulating Thin Films. Oxides. Nitrides and Oxynitrides. Polymeric thin films. 14. Preparation and Properties of Conductive Thin Films. Metals and metal alloys. Resistor materials. Transparent conducting films. Miscellaneous materials. 15. Preparation and Properties of Superconducting and Magnetic Thin Films. Superconducting materials. Magnetic materials. 16. Uses of CVD Thin Films. Applications in electronics and microelectronics. Applications in the field of microwaves and optoelectronics. Miscellaneous applications. Artificial heterostructures (Quantum wells, superlattices, monolayers, two-dimensional electron gases). Part V. 17. Present and Future Importance of CVD Films.

Dielectric and Transport Properties of Thin Films Deposited from Sols with Silicon Nanoparticles

Dielectric and Transport Properties of Thin Films Deposited from Sols with Silicon Nanoparticles PDF Author: Nickolay N. Kononov
Publisher:
ISBN:
Category : Science
Languages : en
Pages :

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Dielectric and Transport Properties of Thin Films Deposited from Sols with Silicon Nanoparticles.

Amorphous Thin Films for Solar-cell Applications

Amorphous Thin Films for Solar-cell Applications PDF Author: RCA Laboratories
Publisher:
ISBN:
Category : Solar batteries
Languages : en
Pages : 56

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Science And Technology Of Thin Films

Science And Technology Of Thin Films PDF Author: Francesco Cino Matacotta
Publisher: World Scientific
ISBN: 9814500747
Category : Technology & Engineering
Languages : en
Pages : 369

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Book Description
This book brings together detailed discussions by leading experts on the various innovative aspects of thin films growth, deposition and characterization techniques, and new thin film materials and devices. It addresses through the different viewpoints of the contributors, the major problem of thin films science - the relation between the energy of the condensing species and the resulting properties of the films. Some of the issues considered include energetic condensation, bombardment stabilization, pulsed electron beam ablation, orientation and self-organization of organic, ferroelectric and nanoparticle thin films. Several chapters focus on applications such as the recent developments in organic optoelectronics, large area electronic technology and superconducting thin film devices.

Amorphous and Heterogeneous Silicon Thin Films - 2000: Volume 609

Amorphous and Heterogeneous Silicon Thin Films - 2000: Volume 609 PDF Author: Robert W. Collins
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 1118

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Book Description
The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

Thin Film Physics And Devices: Fundamental Mechanism, Materials And Applications For Thin Films

Thin Film Physics And Devices: Fundamental Mechanism, Materials And Applications For Thin Films PDF Author: Jianguo Zhu
Publisher: World Scientific
ISBN: 9811224005
Category : Science
Languages : en
Pages : 706

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Book Description
Thin films have an extremely broad range of applications from electronics and optics to new materials and devices. Collaborative and multidisciplinary efforts from physicists, materials scientists, engineers and others have established and advanced a field with key pillars constituting (i) the synthesis and processing of thin films, (ii) the understanding of physical properties in relation to the nanometer scale, (iii) the design and fabrication of nano-devices or devices with thin film materials as building blocks, and (iv) the design and construction of novel tools for characterization of thin films.Against the backdrop of the increasingly interdisciplinary field, this book sets off to inform the basics of thin film physics and thin film devices. Readers are systematically introduced to the synthesis, processing and application of thin films; they will also study the formation of thin films, their structure and defects, and their various properties — mechanical, electrical, semiconducting, magnetic, and superconducting. With a primary focus on inorganic thin film materials, the book also ventures on organic materials such as self-assembled monolayers and Langmuir-Blodgett films.This book will be effective as a teaching or reference material in the various disciplines, ranging from Materials Science and Engineering, Electronic Science and Engineering, Electronic Materials and Components, Semiconductor Physics and Devices, to Applied Physics and more. The original Chinese publication has been instrumental in this purpose across many Chinese universities and colleges.

Polycrystalline And Amorphous Thin Films And Devices

Polycrystalline And Amorphous Thin Films And Devices PDF Author: Lawrence Kazmerski
Publisher: Elsevier
ISBN: 0323156045
Category : Technology & Engineering
Languages : en
Pages : 321

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Book Description
Polycrystalline and Amorphous Thin Films and Devices is a compilation of papers that discusses the electronic, optical, and physical properties of thin material layers and films. This compilation reviews the different applications of thin films of various materials used as protective and optical coatings, thermal transfer layers, and selective membranes from submicron- area VLSI memory units to large-area energy conservation devices. Some papers discuss the basic properties, such as growth, structure, electrical, and optical mechanisms that are encountered in amorphous and polycrystalline thin semiconductor films. For example, experiments on electronic structure of dislocations have led to a model for the intrinsic properties of grain boundaries in polycrystalline semiconductor thin films that can have an impact on the designs of high-efficiency, thin-film solar cells. Other papers review the problems encountered in these thin layers in active semiconductor devices and passive technologies. Techniques in film growth and control variables of source, substrate temperature, and substrate properties will determine the successful performance of the devices installed with these thin film layers. This compilation can prove valuable for chemists, materials engineers, industrial technologists, and researchers in thin-film technology.