Diamond Coated Silicon Field Emitter Array

Diamond Coated Silicon Field Emitter Array
Author:
Publisher:
Total Pages: 2104
Release: 1999
Genre:
ISBN:

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Diamond coated silicon tip arrays, with and without a self-aligned gate, were fabricated, and current-voltage characteristics of 400 tips were measured. Diamond films were grown uniformly on Si tips using microwave plasma after nucleation with 10 nm diamond suspension and substrate bias. An emission current of 57?A was obtained at 5 V from the ungated array tips separated from an anode at 2?m. In the case of the gated arrays with 1.5?m aperture, an emission current of 3.4?A was measured at a gate voltage of 80 V for an anode separation of 200?m. The turn-on voltages for these two types of devices were 0.2 and 40 V, respectively. Diamond coated Si tip arrays have potential applications in field emission based low voltage vacuum electronic devices and microsensors.

Field Emitter Array RF Amplifier Development Project. Phase 1, Cathode Technology Development

Field Emitter Array RF Amplifier Development Project. Phase 1, Cathode Technology Development
Author:
Publisher:
Total Pages: 11
Release: 1992
Genre:
ISBN:

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The initial RF modulation testing of the gated column silicon field emitter with a diamond coated has been done. It should be noted that we didn't use 50 ohm coaxial cable inside the vacuum chamber for this testing since the configuration was initially used for DC testing, and we wanted to get earlier AC results at this time. It is well known the mismatch of the circuit will give a lot of loss during the RF measuring. This report completes modulation at 0.36 GHz, and even higher performance is expected after full blown AC testing. The DC characteristic, as shown in Fig. 2, of this device is comparable to what we reported from the standard silicon field emitter (2 microns opening at gate and 1 micron height, tip is 1 micron below the bottom of gate electrode, and the tip radius is more than 600 A). The diamond-like film was coated on the silicon tips by remote plasma diamond-like film deposition techniques with a short sputtering etching before deposition and to a thickness of approximate 100 A.

Handbook of Industrial Diamonds and Diamond Films

Handbook of Industrial Diamonds and Diamond Films
Author: Mark A. Prelas
Publisher: Routledge
Total Pages: 1232
Release: 2018-12-19
Genre: Science
ISBN: 135144249X

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Examines both mined and synthetic diamonds and diamond films. The text offers coverage on the use of diamond as an engineering material, integrating original research on the science, technology and applications of diamond. It discusses the use of chemical vapour deposition grown diamonds in electronics, cutting tools, wear resistant coatings, thermal management, optics and acoustics, as well as in new products.

Carbon Nanotube and Related Field Emitters

Carbon Nanotube and Related Field Emitters
Author: Yahachi Saito
Publisher: John Wiley & Sons
Total Pages: 551
Release: 2010-10-01
Genre: Science
ISBN: 3527632107

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Carbon nanotubes (CNTs) have novel properties that make them potentially useful in many applications in nanotechnology, electronics, optics and other fields of materials science. These characteristics include extraordinary strength, unique electrical properties, and the fact that they are efficient heat conductors. Field emission is the emission of electrons from the surface of a condensed phase into another phase due to the presence of high electric fields. CNT field emitters are expected to make a breakthrough in the development of field emission display technology and enable miniature X-ray sources that will find a wide variety of applications in electronic devices, industry, and medical and security examinations. This first monograph on the topic covers all aspects in a concise yet comprehensive manner - from the fundamentals to applications. Divided into four sections, the first part discusses the preparation and characterization of carbon nanotubes, while part two is devoted to the field emission properties of carbon nanotubes, including the electron emission mechanism, characteristics of CNT electron sources, and dynamic behavior of CNTs during operation. Part three highlights field emission from other nanomaterials, such as carbon nanowalls, diamond, and silicon and zinc oxide nanowires, before concluding with frontier R&D applications of CNT emitters, from vacuum electronic devices such as field emission displays, to electron sources in electron microscopes, X-ray sources, and microwave amplifiers. Edited by a pioneer in the field, each chapter is written by recognized experts in the respective fields.

Vacuum Technology

Vacuum Technology
Author: Nagamitsu Yoshimura
Publisher: Springer Science & Business Media
Total Pages: 359
Release: 2007-12-04
Genre: Technology & Engineering
ISBN: 3540744339

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In this book, Yoshimura provides a review of the UHV related development during the last decades. His very broad experience in the design enables him to present us this detailed reference. After a general description how to design UHV systems, he covers all important issue in detail, like pumps, outgasing, Gauges, and Electrodes for high voltages. Thus, this book serves as reference for everybody using UVH in scientific equipment.

Silicon Nanomaterials Sourcebook

Silicon Nanomaterials Sourcebook
Author: Klaus D. Sattler
Publisher: CRC Press
Total Pages: 643
Release: 2017-07-28
Genre: Science
ISBN: 1498763871

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This comprehensive tutorial guide to silicon nanomaterials spans from fundamental properties, growth mechanisms, and processing of nanosilicon to electronic device, energy conversion and storage, biomedical, and environmental applications. It also presents core knowledge with basic mathematical equations, tables, and graphs in order to provide the reader with the tools necessary to understand the latest technology developments. From low-dimensional structures, quantum dots, and nanowires to hybrid materials, arrays, networks, and biomedical applications, this Sourcebook is a complete resource for anyone working with this materials: Covers fundamental concepts, properties, methods, and practical applications. Focuses on one important type of silicon nanomaterial in every chapter. Discusses formation, properties, and applications for each material. Written in a tutorial style with basic equations and fundamentals included in an extended introduction. Highlights materials that show exceptional properties as well as strong prospects for future applications. Klaus D. Sattler is professor physics at the University of Hawaii, Honolulu, having earned his PhD at the Swiss Federal Institute of Technology (ETH) in Zurich. He was honored with the Walter Schottky Prize from the German Physical Society, and is the editor of the sister work also published by Taylor & Francis, Carbon Nanomaterials Sourcebook, as well as the acclaimed multi-volume Handbook of Nanophysics.