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This book on nanodiamonds is the first of its kind. Nanodiamonds are indispensable for polishing industrial materials (e.g., computer hard drives and read heads) and advanced ceramics (e.g., silicon carbide and gem diamond). The book is valuable for those dealing with nanodiamonds as well as for those interested in a general education of nanosize materials.
Technology is becoming molecularly precise. Nanotechnology, otherwise known as molecular engineering, will soon create effective machines as small as DNA. This capacity to manipulate matter—to program matter—with atomic precision will utterly change the economic, ecological, and cultural fabric of our lives. This book, which is accessible to a broad audience while providing references to the technical literature, presents a wide range of potential applications of this new material technology. The first chapter introduces the basic concepts of molecular engineering and demonstrates that several mutually reinforcing trends in current research are leading directly into a world of surprisingly powerful molecular machines. Nine original essays on specific applications follow the introductory chapter. The first section presents applications of nanotechnology that interact directly with the molecular systems of the human body. The second presents applications that function, for the most part, outside the body. The final section details the mechanisms of a universal human-machine interface and the operation of an extremely high resolution display system.
Innovations in Nanoscience and Nanotechnology summarizes the state of the art in nano-sized materials. The authors focus on innovation aspects and highlight potentials for future developments and applications in health care, including pharmaceutics, dentistry, and cosmetics; information and communications; energy; and chemical engineering. The chapters are written by leading researchers in nanoscience, chemistry, pharmacy, biology, chemistry, physics, engineering, medicine, and social science. The authors come from a range of backgrounds including academia, industry, and national and international laboratories around the world. This book is ideally suited for researchers and students in chemistry, physics, biology, engineering, materials science, and medicine and is a useful guide for industrialists. It aims to provide inspiration for scientists, new ideas for developers and innovators in industry, and guidelines for toxicologists. It also provides guidelines for agencies and government authorities to establish safe working conditions.
Ultrananocrystalline Diamond: Syntheses, Properties, and Applications is a unique practical reference handbook that brings together the basic science of nanoscale carbon structures, particularly its diamond phase, with detailed information on nanodiamond synthesis, properties, and applications. Here you will learn about UNCD in its two forms, as a dispersed powder made by detonation techniques and as a chemical vapor deposited film. You will also learn about the superior mechanical, tribological, transport, electrochemical, and electron emission properties of UNCD for a wide range of applications including MEMS, NEMS, surface acoustic wave (SAW) devices, electrochemical sensors, coatings for field emission arrays, photonic and RF switching, biosensors, and neural prostheses, and more. This ôEverything about Ultra-nanocrystalline Diamondö book with 16 chapters is written by leading experts worldwide. It is for everyone who researches carbon nanostructures, everyone who produces them, everyone who characterizes them, and everyone who builds devices using them.
What should the average person know about science? Because science is so central to life in the 21st century, science educators and other leaders of the scientific community believe that it is essential that everyone understand the basic concepts of the most vital and far-reaching disciplines. Nanotechnology 101 does exactly that. This accessible volume provides readers — whether students new to the field or just interested members of the lay public — with the essential ideas of the new science of nanotechnology using a minimum of jargon and mathematics. Concepts are introduced in a progressive order so that more complicted ideas build on simpler ones, and each is discussed in small, bite-sized segments so that they can be more easily understood. Nanotechnology 101 provides contemporary topics about the infusion of nanotechnology in the areas of the environment, food safety, medicine and healthcare, consumer goods, agriculture, homeland security, and energy supply. With a bibliography, sidebars, and interviews with leading figures in the field, Nanotechnology 101 provides the perfect starting point for anyone wishing to understand this burgeoning science.
The cornerstone and linch-pin of the assessment of Chapter One manifest itself in the (i) galvanization of numerous inventions, innovations, discoveries and huge production of nanotechnology and nanometer-scale practical applications of nanodevices, nanostructures, nanosystems, and global management of nanotech industries, growth and its maximization of global competitive advantage, and the (ii) conglomeration of nanometer-scale technologies driven multinational enterprises, cross border transactions, strategic alliances, high degree of concentration, and global management in contrast to the global economic crisis, threats, and challenges. Chapter Two gives prominence to the Japanese mega-industrial concentration directions in nanotechnology global industries, investment, growth and diversification underwritten in combination and centralization of huge sources of financing and loanable funds made available by joint Japan-China use of massive reserves of government-owned. The distinguishing feature of Chapter Three is the global competitive advantage market dominance generated by the creation, discoveries and innovation of Japan/China nanotechnology and practical applications of nanometer-scale technologies revolution high degree of concentration that contrast to and surpass competitiveness embedded in the strong bilateral U.S. and China Strategic and Economic Dialogue, and the U.S./Japan Investment Initiative. The Japan/China nanotechnology multinational enterprises high degree concentration are engaged in the widespread use of nanotechnologies groundbreaking transformation to creative and innovative nanodevices and nanostructures leading to the global competitive advantage, where size is measured on a scale of 1 to 100 nanometers (nm); one nanometer is equal to one billionth of a meter or 1000 times smaller than the diameter of a human hair. The underutilization of practical applications of nanotechnologies is evident in Chapter Four where the distinguishing feature is the global demand for Africa and the Middle East Area (The Area) huge mineral resources and production exceed the Area's supply technical capabilities. Chapter Five assesses additional revenue sources and investment for financing health care for the uninsured trough establishment of commercialization and transformation of patents and licensing agreements of U.S. hospital inventions and discoveries under the U.S. Department of Defense Military Health System (DoD MHS), with practical applications of nanotechnology advantages.
- Gives unified presentation of many of the major principles in nanotechnology: molecular-based study of condensed matter in small systems. - Authored by an expert in the molecular-based study of matter - Accessible to students, yet of interest to experts - Emphasizes the intrinsic beauty of methods of bottom-up nanotechnology - Includes many full-color figures
Scanning probe techniques. Scanning probe microscopy based nanoscale patterning and fabrication / X. N. Xie, H. J. Chung and A. T. S. Wee. Nanoscale characterization by scanning tunneling microscopy / H. Xu ... [et al.] -- Nanofabrication. EUV lithography for semiconductor manufacturing and nanofabrication / H. Kinoshita. Synchrotron-radiation-supported high-aspect-ratio nanofabrication / A. Chen ... [et al.] -- Functional nanomaterials. Chemical interactions at noble metal nanoparticle surfaces - catalysis, sensors and devices / A. S. Nair. Diamond-like carbon : a new material base for nano-architectures / X. Li and D. H. C. Chua. Hotplate technique for nanomaterials / Y. Zhu and C. H. Sow -- Molecular engineering. [Pie symbol]-d interaction based molecular conducting magnets : how to increase the effects of the [Pie symbol]-d interaction / A. Miyazaki and T. Enoki. Recent developments on porphyrin assemblies / R. Charvet ... [et al.] -- Bionanotechnology and nanomedicine. Nanostructures from designer peptides / B. T. Ong, P. K. Ajikumar and S. Valiyaveettil. Nanotechnology and human diseases / G. Y. H. Lee and C. T. Lim. Nanomedicine : nanoparticles of biodegradable polymers for cancer diagnosis and treatment / S. S. Feng.
Profit big by investing in the science of the very small—Investing in Nanotechnology shows you how. Nanotechnology—the art and science of manipulating and rearranging individual molecules to create useful materials, devices, and systems—is the business world’s next revolution. Within the next decade, nanotechnology is predicted to account for $1 trillion worth of products in the US and will transform a number of industries, including manufacturing, health care, energy, agriculture, communications, electronics, and more. Investing in Nanotechnology teaches you everything you need to know to be a part of this exciting and groundbreaking sea change, from relevant information on more than 100 leading public and private nanotech companies—and how to spot the mere “nano-pretenders” from the real players—to savvy and comprehensive advice on investing in nanotechnology for maximum rewards and minimum risk. Prepare for the nanotech shift today, to cash in tomorrow.