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Titlebook: Applied Scanning Probe Methods III; Characterization Bharat Bhushan,Harald Fuchs Book 2006 Springer-Verlag Berlin Heidelberg 2006 AFM.Fulle

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發(fā)表于 2025-3-21 17:57:54 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Applied Scanning Probe Methods III
期刊簡(jiǎn)稱Characterization
影響因子2023Bharat Bhushan,Harald Fuchs
視頻videohttp://file.papertrans.cn/161/160117/160117.mp4
發(fā)行地址First book summarizing the state of the art of this technique.Real industrial applications included.Includes supplementary material:
學(xué)科分類NanoScience and Technology
圖書封面Titlebook: Applied Scanning Probe Methods III; Characterization Bharat Bhushan,Harald Fuchs Book 2006 Springer-Verlag Berlin Heidelberg 2006 AFM.Fulle
影響因子The Nobel Prize of 1986 on Sc- ning Tunneling Microscopy sig- led a new era in imaging. The sc- ning probes emerged as a new i- trument for imaging with a pre- sion suf?cient to delineate single atoms. At ?rst there were two – the Scanning Tunneling Microscope, or STM, and the Atomic Force Mic- scope, or AFM. The STM relies on electrons tunneling between tip and sample whereas the AFM depends on the force acting on the tip when it was placed near the sample. These were quickly followed by the - gneticForceMicroscope,MFM,and the Electrostatic Force Microscope, EFM. The MFM will image a single magnetic bit with features as small as 10nm. With the EFM one can monitor the charge of a single electron. Prof. Paul Hansma at Santa Barbara opened the door even wider when he was able to image biological objects in aqueous environments. At this point the sluice gates were opened and a multitude of different instruments appeared. There are signi?cant differences between the Scanning Probe Microscopes or SPM, and others such as the Scanning Electron Microscope or SEM. The probe microscopes do not require preparation of the sample and they operate in ambient atmosphere, whereas, the SEM must ope
Pindex Book 2006
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Investigation of Organic Supramolecules by Scanning Probe Microscopy in Ultra-High Vacuum,l, semiconductor and insulating surfaces. The same chemical compounds give rise to different structures, depending on several factors, such as the adsorbate coverage, the substrate orientation or the temperature. Self-assembled patterns formed on the step edges of insulating surfaces — or raised fro
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Book 2006th a pre- sion suf?cient to delineate single atoms. At ?rst there were two – the Scanning Tunneling Microscope, or STM, and the Atomic Force Mic- scope, or AFM. The STM relies on electrons tunneling between tip and sample whereas the AFM depends on the force acting on the tip when it was placed near
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https://doi.org/10.1007/978-3-030-63668-5meters. On the theoretical side, models have been developed treating the role of multiscale surface roughness, thus it is now possible to predict some of the most significant properties of solid bodies in contact.
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