電顕によるナノチューブ研究<br>Electron Microscopy of Nanotubes

個数:

電顕によるナノチューブ研究
Electron Microscopy of Nanotubes

  • 提携先の海外書籍取次会社に在庫がございます。通常3週間で発送いたします。
    重要ご説明事項
    1. 納期遅延や、ご入手不能となる場合が若干ございます。
    2. 複数冊ご注文の場合は、ご注文数量が揃ってからまとめて発送いたします。
    3. 美品のご指定は承りかねます。

    ●3Dセキュア導入とクレジットカードによるお支払いについて
  • 【入荷遅延について】
    世界情勢の影響により、海外からお取り寄せとなる洋書・洋古書の入荷が、表示している標準的な納期よりも遅延する場合がございます。
    おそれいりますが、あらかじめご了承くださいますようお願い申し上げます。
  • ◆画像の表紙や帯等は実物とは異なる場合があります。
  • ◆ウェブストアでの洋書販売価格は、弊社店舗等での販売価格とは異なります。
    また、洋書販売価格は、ご注文確定時点での日本円価格となります。
    ご注文確定後に、同じ洋書の販売価格が変動しても、それは反映されません。
  • 製本 Hardcover:ハードカバー版/ページ数 310 p.
  • 言語 ENG
  • 商品コード 9781402073618
  • DDC分類 620.11

基本説明

Describes diffraction, imaging and spectroscopy of carbon-based nanotubes, the physical property nanomeasurements of carbon nanotubes based on in-situ TEM, and more.

Full Description

Research in carbon nanotubes has reached a horizon that is impacting a variety of fields, such as nanoelectronics, flat panel display, composite materials, sensors, nanodevices, and novel instrumentation. The unique structures of the nanotubes result in numerous superior physical and chemical properties, such as the strongest mechan­ ical strength, the highest thermal conductivity, room-temperature ballistic quantum conductance, electromechanical coupling, and super surface functionality. Several books are available that introduce the synthesis, physical and chemical properties, and applications of carbon nanotubes. Among the various analytical techniques, high-resolution transmission electron microscopy (HRTEM) has played a key role in the discovery and characterization of carbon nanotubes. It may be claimed that carbon nanotubes might not have been discovered without using HRTEM. There is a great need for a book that addresses the theory, techniques, and applications of electron microscopy and associated techniques for nanotube research. The objective of this book is to fill this gap. The potential of HRTEM is now well accepted in wide-ranging communities such as materials science, physics, chemistry, and electrical engineering. TEM is a powerful technique that is indispensable for characterizing nanomaterials and is a tool that each major research institute must have in order to advance its research in nanotechnology.

Contents

I. Diffraction, Imaging, and Spectroscopy of Carbon-Based Nanotubes.- 1. Diffraction and Imaging of Single-Walled Carbon Nanotubes.- 2. Electron Diffraction and Microscopy of Single-Walled Carbon Nanotube Bundles.- 3. Nanodiffraction of Carbon Nanotubes.- 4. The Smallest Carbon Nanotubes.- 5. Electron Energy-Loss Spectroscopy of Carbon Nanotubes and Onions.- 6. Carbon Nanostructures Under the Electron Beam: Formation of New Structures and In-Situ Study of Radiation-Induced Processes.- II. Nanomeasurements of Carbon Nanotubes based on In-Situ TEM.- 7. In-Situ Mechanical Properties of Nanotubes and Nanowires.- 8. In-Situ Field Emission of Carbon Nanotubes.- 9. In-Situ Electric Transport of Carbon Nanotubes.- III. Tabular Structures and Nanocrystals Grown by Filling Nanotubes.- 10. Electron Microscopy of Boron Nitride Nanotubes.- 11. Inorganic Nanoparticles with Fullerene-like Structure and Inorganic Nanotubes.- 12. Integral Atomic Layer Architectures of ID Crystals Inserted into Single-Walled Carbon Nanotubes.

最近チェックした商品