Principle of AFM
Author:
Publisher
Springer Berlin Heidelberg
Link
https://link.springer.com/content/pdf/10.1007/978-3-662-64785-1_1
Reference50 articles.
1. Alsteens, D., Newton, R., Schubert, R., Martinez-Martin, D., Delguste, M., Roska, B., & Müller, D. J. (2017). Nanomechanical mapping of first binding steps of a virus to animal cells. Nature Nanotechnology, 12, 177–183.
2. Amyot, R., & Flechsig, H. (2020). BioAFMviewer: An interactive interface for simulated AFM scanning of biomolecular structures and dynamics. PLoS Computational Biology, 16, e1008444
3. Ando, T. (2013). Molecular machines directly observed by high-speed atomic force microscopy. FEBS Letters, 587, 997–1007.
4. Ando, T., Uchihashi, T., Kodera, N., Miyagi, A., Nakakita, R., Yamashita, H., & Matada, K. (2005). High-speed AFM for studying the dynamic behavior of protein molecules at work. e-Journal of Surface Science and Nanotechnology, 3, 384–392.
5. Bottomley, L. A. (1998). Scanning probe microscopy. Analytical Chemistry, 70, 425R-475R.
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