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Nanoliquid Processes for Electronic Devices = Developments of Inorganic Functional Liquid Materials and Their Processing /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Nanoliquid Processes for Electronic Devices/ by Tatsuya Shimoda.
其他題名:
Developments of Inorganic Functional Liquid Materials and Their Processing /
作者:
Shimoda, Tatsuya.
面頁冊數:
XVI, 590 p. 434 illus., 262 illus. in color.online resource. :
Contained By:
Springer Nature eBook
標題:
Materials—Surfaces. -
電子資源:
https://doi.org/10.1007/978-981-13-2953-1
ISBN:
9789811329531
Nanoliquid Processes for Electronic Devices = Developments of Inorganic Functional Liquid Materials and Their Processing /
Shimoda, Tatsuya.
Nanoliquid Processes for Electronic Devices
Developments of Inorganic Functional Liquid Materials and Their Processing /[electronic resource] :by Tatsuya Shimoda. - 1st ed. 2019. - XVI, 590 p. 434 illus., 262 illus. in color.online resource.
Liquid process -- Guide to silicon-based materials -- Liquid silicon -- Thin film formation by coating -- Liquid vapor deposition using liquid silicon (LVD) -- Liquid silicon family materials (1) -- Liquid silicon family materials (2) -- Nano pattern formation using liquid silicon -- Development of solar cells using liquid silicon -- Development of thin film transistors using liquid silicon -- Guide to Oxide-based materials -- Improvement of solid through improved solutions and gels (1) -- Improvement of solid through improved solutions and gels (2) -- Direct imprinting of gel (nano-Rheology Printing) -- Novel materials proper to liquid process -- Thin film oxide-transistor by liquid process (1) -- Thin film oxide-transistor by liquid process (2) -- Thin film oxide-transistor by liquid process (3) -- Device fabrication by n-RP.
This book summarizes the results of the research on how to make small electronic devices with high properties by using simple liquid processes such as coating, self-assembling and printing, especially focusing on devices composed of silicon and oxide materials. It describes syntheses and analyses of solution materials, formations of solid thin films from solutions, newly developed patterning methods to make devices, and characterization of the developed devices. In the first part of the book, the research on liquid silicon (Si) materials is described. Because the use of a liquid material is a quite new idea for Si devices, this book is the first one to describe liquid Si materials for electronic devices. Si devices as typified by MOS-FET have been produced by using solid and gas materials. This volume precisely describes a series of processes from material synthesis to device fabrication for those who are interested and are/will be engaged in liquid Si-related work. In the latter part of the book, a general method of how to make good oxide films from solutions and a new imprinting method to make nanosized patterns are introduced. For making oxide films with high quality, the designing of the solution is crucial. If a solution is designed properly, a gel material called "cluster gel" can be formed which is able to be imprinted to form nanosized patterns. The anticipated readers of this book are researchers, engineers, and students who are interested in solution and printing processes for making devices. More generally, this book will also provide guidelines for corporate managers and executives who are responsible for making strategies for future manufacturing processes. .
ISBN: 9789811329531
Standard No.: 10.1007/978-981-13-2953-1doiSubjects--Topical Terms:
1253588
Materials—Surfaces.
LC Class. No.: TA418.7-418.76
Dewey Class. No.: 620.44
Nanoliquid Processes for Electronic Devices = Developments of Inorganic Functional Liquid Materials and Their Processing /
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Liquid process -- Guide to silicon-based materials -- Liquid silicon -- Thin film formation by coating -- Liquid vapor deposition using liquid silicon (LVD) -- Liquid silicon family materials (1) -- Liquid silicon family materials (2) -- Nano pattern formation using liquid silicon -- Development of solar cells using liquid silicon -- Development of thin film transistors using liquid silicon -- Guide to Oxide-based materials -- Improvement of solid through improved solutions and gels (1) -- Improvement of solid through improved solutions and gels (2) -- Direct imprinting of gel (nano-Rheology Printing) -- Novel materials proper to liquid process -- Thin film oxide-transistor by liquid process (1) -- Thin film oxide-transistor by liquid process (2) -- Thin film oxide-transistor by liquid process (3) -- Device fabrication by n-RP.
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