Author: (Japanese) Editorial Committee of the Nanotechnology Handbook, Editor-in-Chief: Wang Mingyang, et al.
Publisher:
Publish Date: 2005-01-01
Features: This handbook is divided into four parts, covering fundamental to applied aspects, and introduces nanotechnology in fields such as electricity, electronics, information, chemistry, and biology.
Part 1 first introduces the development history and fundamental theories of nanotechnology, then describes nanoscale processing methods, as well as the characteristics and related manufacturing techniques of two special nanoscale structures: fullerene and nanotubes.
Part 2 focuses on the scanning electron microscope, introducing various methods for measurement, evaluation, and analysis at the nanoscale.
Part 3IT industry,、,。
Part 4、,。
The contributors to this handbook are active researchers and technicians in relevant fields in Japan, so the handbook reflects the latest research findings.
This handbook is suitable for graduate students in fields such as engineering, agriculture, medicine, and pharmacy, as well as researchers and technicians working in various industries.
The handbook is divided into four parts, covering fundamental to applied aspects, and introduces nanotechnology in fields such as electricity, electronics, information, chemistry, and biology.
Part 1 first introduces the development history and fundamental theories of nanotechnology, then describes nanoscale processing methods, as well as the characteristics and related manufacturing techniques of two special nanoscale structures: fullerene and nanotubes.
Part 2 focuses on the scanning electron microscope, introducing various methods for measurement, evaluation, and analysis at the nanoscale.
Part 3 focuses on the application of nanotechnology in the IT industry, discussing not only devices such as various semiconductor devices, storage, and displays but also future devices like quantum computing components.
Part 4 focuses on the analysis, measurement, and control methods of biological substances containing genetic information, as well as nanophase chemistry and its applications in medical practice. It also provides an overview of new technologies and achievements in biology and chemistry from the perspective of nanotechnology.
The contributors to this handbook are active researchers and technicians in relevant fields in Japan, so the handbook reflects the latest research findings.
This handbook is suitable for graduate students in fields such as engineering, agriculture, medicine, and pharmacy, as well as researchers and technicians working in various industries.
Nanotechnology Handbook
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