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Statistical Investigation of SOL-GEL Lead Titanate (PT) Processing

Statistical Investigation of SOL-GEL Lead Titanate (PT) Processing PDF Author: B. M. Melnick
Publisher:
ISBN:
Category :
Languages : en
Pages : 14

Book Description
There are three stages involved in the successful application of a thin film sol-gel oxide, (1) solution synthesis, (2) application, and (3) post application treatments. Each stage contains many processing steps that can be varied in order to optimize the thin film for various applications. This work entails a statistical investigation of a thin film sol-gel PT process for use in memory applications. Statistical experimental design yields a maximum amount of information for a minimum amount of effort. Candidate controllable variables (factors) and responses are first identified. A screening experiment is then conducted to identify the most important factors based on the identified responses. A full-factorial experiment is then conducted to further evaluate the important factors. Finally, a response surface analysis is performed in order to optimize the important factors. Responses such as switching charge (2Pr), endurance and dielectric measurements are used to analyze the sol-gel lead titanate.

Statistical Investigation of SOL-GEL Lead Titanate (PT) Processing

Statistical Investigation of SOL-GEL Lead Titanate (PT) Processing PDF Author: B. M. Melnick
Publisher:
ISBN:
Category :
Languages : en
Pages : 14

Book Description
There are three stages involved in the successful application of a thin film sol-gel oxide, (1) solution synthesis, (2) application, and (3) post application treatments. Each stage contains many processing steps that can be varied in order to optimize the thin film for various applications. This work entails a statistical investigation of a thin film sol-gel PT process for use in memory applications. Statistical experimental design yields a maximum amount of information for a minimum amount of effort. Candidate controllable variables (factors) and responses are first identified. A screening experiment is then conducted to identify the most important factors based on the identified responses. A full-factorial experiment is then conducted to further evaluate the important factors. Finally, a response surface analysis is performed in order to optimize the important factors. Responses such as switching charge (2Pr), endurance and dielectric measurements are used to analyze the sol-gel lead titanate.

Solution Processing of Inorganic Materials

Solution Processing of Inorganic Materials PDF Author: David Mitzi
Publisher: John Wiley & Sons
ISBN: 0470407611
Category : Science
Languages : en
Pages : 522

Book Description
Discover the materials set to revolutionize the electronics industry The search for electronic materials that can be cheaply solution-processed into films, while simultaneously providing quality device characteristics, represents a major challenge for materials scientists. Continuous semiconducting thin films with large carrier mobilities are particularly desirable for high-speed microelectronic applications, potentially providing new opportunities for the development of low-cost, large-area, flexible computing devices, displays, sensors, and solar cells. To date, the majority of solution-processing research has focused on molecular and polymeric organic films. In contrast, this book reviews recent achievements in the search for solution-processed inorganic semiconductors and other critical electronic components. These components offer the potential for better performance and more robust thermal and mechanical stability than comparable organic-based systems. Solution Processing of Inorganic Materials covers everything from the more traditional fields of sol-gel processing and chemical bath deposition to the cutting-edge use of nanomaterials in thin-film deposition. In particular, the book focuses on materials and techniques that are compatible with high-throughput, low-cost, and low-temperature deposition processes such as spin coating, dip coating, printing, and stamping. Throughout the text, illustrations and examples of applications are provided to help the reader fully appreciate the concepts and opportunities involved in this exciting field. In addition to presenting the state-of-the-art research, the book offers extensive background material. As a result, any researcher involved or interested in electronic device fabrication can turn to this book to become fully versed in the solution-processed inorganic materials that are set to revolutionize the electronics industry.

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