书目名称 | Nanomechanical and Nanoelectromechanical Phenomena in 2D Atomic Crystals |
副标题 | A Scanning Probe Mic |
编辑 | Nicholas D. Kay |
视频video | |
概述 | Nominated as an outstanding Ph.D.thesis by Lancaster University and University of Manchester, UK.Includes high-resolution computer-generated imagery (CGI) and diagrams to aid understanding and visuali |
丛书名称 | Springer Theses |
图书封面 |  |
描述 | .This thesis introduces a unique approach of applying atomic force microscopy to study the nanoelectromechanical properties of 2D materials, providing high-resolution computer-generated imagery (CGI) and diagrams to aid readers’ understanding and visualization. The isolation of graphene and, shortly after, a host of other 2D materials has attracted a great deal of interest in the scientific community for both their range of extremely desirable and their record-breaking properties. Amongst these properties are some of the highest elastic moduli and tensile strengths ever observed in nature. The work, which was undertaken at Lancaster University’s Physics department in conjunction with the University of Manchester and the National Physical Laboratory, offers a new approach to understanding the nanomechanical and nanoelectromechanical properties of 2D materials by utilising the nanoscale and nanosecond resolution of ultrasonic force and heterodyne force microscopy (UFM and HFM) – both contact mode atomic force microscopy (AFM) techniques. Using this approach and developing several other new techniques the authors succeeded in probing samples’ subsurface and mechanical properties, whic |
出版日期 | Book 2018 |
关键词 | Nano Electromechanical Resonator; Nano Mechanics; 2D Crystals; Atomic Force Microscopy; Heterodyne Force |
版次 | 1 |
doi | https://doi.org/10.1007/978-3-319-70181-3 |
isbn_softcover | 978-3-319-88898-9 |
isbn_ebook | 978-3-319-70181-3Series ISSN 2190-5053 Series E-ISSN 2190-5061 |
issn_series | 2190-5053 |
copyright | Springer International Publishing AG 2018 |