Synthetic Diamond

Synthetic Diamond

Author: Karl E. Spear

Publisher: John Wiley & Sons

Published: 1994-04-04

Total Pages: 690

ISBN-13: 9780471535898

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A riveting look at the science, technology and people involved in overcoming early impracticalities of the fledgling chemical vapor deposition (CVD) synthesis method and its development in today's state of commercial readiness. Provides insights into numerous vapor phase techniques. Surveys the synthesis, structure, properties and applications of diamondlike carbon. Details current and rapidly emerging applications, manufacturing and markets.


Handbook of Industrial Diamonds

Handbook of Industrial Diamonds

Author: James Sung

Publisher: CRC Press

Published: 2021-07-22

Total Pages: 439

ISBN-13: 100040062X

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Every year, the world consumes more than 10,000 tons of diamond superabrasives, which are indispensable for fields such as construction, metals, ceramics, automobiles, semiconductors, computers, and cellular phones. In fact, the per capita consumption of superabrasives may be used as an indicator of a country's industrial activities. This volume presents several aspects of superhard materials, especially diamond superabrasives and their manufacture, properties, and applications, and introduces several new designs of ultrahard materials that may be harder than diamond. It discusses diamond’s connection with the origin of life, in particular, the origin of the first RNA. In addition, it throws light on the concept of diamond quantum computers with neutrons of the carbon-13 isotope as quantum bits. This innovation may maintain quantum coherence with minimal interference without using complicated cryogenic cooling. Hence, it can be a robust design for future quantum computers. For those interested in the depth of the quantum mechanical world, a chapter elaborates the history of life and humanity in light of the evolution of quantum universes.


Diamond

Diamond

Author: Steve Lerner

Publisher: MIT Press

Published: 2006-02-17

Total Pages: 344

ISBN-13: 9780262250184

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The story of how a mixed-income minority community in Louisiana's Chemical Corridor fought Shell Oil and won. For years, the residents of Diamond, Louisiana, lived with an inescapable acrid, metallic smell—the "toxic bouquet" of pollution—and a mysterious chemical fog that seeped into their houses. They looked out on the massive Norco Industrial Complex: a maze of pipelines, stacks topped by flares burning off excess gas, and huge oil tankers moving up the Mississippi. They experienced headaches, stinging eyes, allergies, asthma, and other respiratory problems, skin disorders, and cancers that they were convinced were caused by their proximity to heavy industry. Periodic industrial explosions damaged their houses and killed some of their neighbors. Their small, African-American, mixed-income neighborhood was sandwiched between two giant Shell Oil plants in Louisiana's notorious Chemical Corridor. When the residents of Diamond demanded that Shell relocate them, their chances of success seemed slim: a community with little political clout was taking on the second-largest oil company in the world. And yet, after effective grassroots organizing, unremitting fenceline protests, seemingly endless negotiations with Shell officials, and intense media coverage, the people of Diamond finally got what they wanted: money from Shell to help them relocate out of harm's way. In this book, Steve Lerner tells their story. Around the United States, struggles for environmental justice such as the one in Diamond are the new front lines of both the civil rights and the environmental movements, and Diamond is in many ways a classic environmental-justice story: a minority neighborhood, faced with a polluting industry in its midst, fights back. But Diamond is also the history of a black community that goes back to the days of slavery. In 1811, Diamond (then the Trepagnier Plantation) was the center of the largest slave rebellion in United States history. Descendants of these slaves were among the participants in the modern-day Diamond relocation campaign. Steve Lerner talks to the people of Diamond, and lets them tell their story in their own words. He talks also to the residents of a nearby white neighborhood—many of whom work for Shell and have fewer complaints about the plants—and to environmental activists and Shell officials. His account of Diamond's 30-year ordeal puts a human face on the struggle for environmental justice in the United States.


Properties of Natural and Synthetic Diamond

Properties of Natural and Synthetic Diamond

Author: J. E. Field

Publisher: Academic Press

Published: 1992-10-21

Total Pages: 740

ISBN-13:

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This text examines advances made in understanding the physical properties of diamond and in finding new technological applications. Coverage includes developments in the growth of thin diamond films which should have major implications for a range of industrial applications.


Handbook of Industrial Diamonds and Diamond Films

Handbook of Industrial Diamonds and Diamond Films

Author: Mark A. Prelas

Publisher: Routledge

Published: 2018-12-19

Total Pages: 1175

ISBN-13: 1351442481

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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.


Handbook of Industrial Diamonds

Handbook of Industrial Diamonds

Author: James Sung

Publisher: CRC Press

Published: 2021-07-23

Total Pages: 451

ISBN-13: 1000400867

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Diamond's supreme properties can be realized by chemical vapor deposition (CVD) of diamond films with many applications, such as cutting tools, tweeter diaphragms, deep ultraviolet light-emitting diodes, radomes, CPU transistors, quantum computer, and MEMs. This volume provides extensive reviews on various CVD methods with examples. Meanwhile, there are other forms of carbon coatings, including diamond-like carbon, carbon nanotubes, and graphene. These carbon coatings possess properties derived from diamond. For example, graphene is actually flattened diamond’s (111) face with superb electrical and thermal conductivities. For the first time, this book reveals a catalytic method to grow single-crystal graphene, whose applications are expected in heat spreaders, battery electrodes, interconnected circuits, and 6G antennae.