Nanometrology: Advances in Measurement and Characterization at the Nanoscale

· Nanotechnology 17권 · One Billion Knowledgeable
eBook
269
페이지
적용 가능
검증되지 않은 평점과 리뷰입니다.  자세히 알아보기
5월 9일부터 가격 22% 인하

eBook 정보

Nanometrology-This chapter introduces the fundamental concepts of nanometrology, focusing on precision measurement techniques essential for the study of nanomaterials

In situ electron microscopy-Learn how electron microscopy enables realtime observation of nanomaterials under different conditions, providing key insights into their structure and behavior


Atomic force microscopy-Discover how atomic force microscopy (AFM) provides highly detailed, threedimensional images at the nanoscale, critical for the study of material surfaces


Nanotechnology-A deep dive into the broader implications of nanotechnology, exploring its role in industries like medicine, energy, and manufacturing, and its transformative potential


Probe tip-This chapter delves into the technology behind scanning probe microscopy, emphasizing the significance of probe tips for nanoscale imaging and manipulation


Molecular Foundry-Gain an understanding of the Molecular Foundry, a hub for creating and characterizing advanced nanostructures, highlighting its role in innovation


Featureoriented scanning-Learn about techniques used to analyze specific features of nanomaterials, enhancing the accuracy of measurements and structural characterizations


Productive nanosystems-Understand the production processes behind nanosystems, focusing on their scalability and applicability in creating highperformance materials


Nanomaterials-This chapter explores various types of nanomaterials, their synthesis, and applications in fields ranging from electronics to biomedicine


Characterization of nanoparticles-Learn the key methods used to characterize nanoparticles, essential for understanding their unique properties and interactions


Multitip scanning tunneling microscopy-A specialized form of microscopy that allows for simultaneous, highresolution imaging and manipulation of nanoscale structures


Vibrational analysis with scanning probe microscopy-Explore how vibrational analysis via scanning probe microscopy helps in identifying material properties and behaviors at the atomic level


Molecular nanotechnology-This chapter examines how molecular nanotechnology enables the creation of molecular machines, opening new doors in medicine, computing, and manufacturing


Scanning probe microscopy-Gain insight into scanning probe microscopy, a cornerstone of nanometrology, offering unprecedented precision in imaging and material analysis


TSOM-Explore the advancements in TipEnhanced Spectroscopy (TSOM), focusing on its ability to enhance resolution and provide deeper insights into nanostructures


Electron beaminduced deposition-Learn how electron beaminduced deposition is used to construct nanoscale materials with high precision, essential for device fabrication


Nanoruler-This chapter focuses on the development and application of nanorulers, which are crucial tools for measuring nanoscale objects with extreme accuracy


Profilometer-Understand how profilometers are employed to measure the surface topography of nanomaterials, aiding in quality control and research


Nanomechanics-Explore the mechanical properties of nanoscale materials, essential for the development of nanodevices and understanding their behavior under stress


Nanoengineering-This chapter covers the engineering principles used to design and build nanodevices, highlighting key applications and challenges in the field


Nanoelectrochemistry-Delve into the field of nanoelectrochemistry, which studies the electrochemical behavior of nanoscale materials and their use in energy storage and sensors

이 eBook 평가

의견을 알려주세요.

읽기 정보

스마트폰 및 태블릿
AndroidiPad/iPhoneGoogle Play 북 앱을 설치하세요. 계정과 자동으로 동기화되어 어디서나 온라인 또는 오프라인으로 책을 읽을 수 있습니다.
노트북 및 컴퓨터
컴퓨터의 웹브라우저를 사용하여 Google Play에서 구매한 오디오북을 들을 수 있습니다.
eReader 및 기타 기기
Kobo eReader 등의 eBook 리더기에서 읽으려면 파일을 다운로드하여 기기로 전송해야 합니다. 지원되는 eBook 리더기로 파일을 전송하려면 고객센터에서 자세한 안내를 따르세요.