Publications

Found 76 results
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Journal Article
Fritz, J. et al. Translating biomolecular recognition into nanomechanics. Science 288, 316–318 (2000).
Sass, J. K., Gimzewski, J. K., Haiss, W., Besocke, K. H. & Lackey, D. Theoretical aspects and experimental results of STM studies in polar liquids. Journal of Physics: Condensed Matter 3, S121 (1991).
Berger, R. et al. Surface stress in the self-assembly of alkanethiols on gold probed. by a force microscopy technique. Applied Physics A: Materials Science & Processing 66, S55–S59 (1998).
Berger, R. et al. Surface stress in the self-assembly of alkanethiols on gold. Science 276, 2021–2024 (1997).
Fritz, J. et al. Stress at the solid-liquid interface of self-assembled monolayers on gold investigated with a nanomechanical sensor. Langmuir 16, 9694–9696 (2000).
Langlais, V. J. et al. Spatially resolved tunneling along a molecular wire. Physical review letters 83, 2809 (1999).
Lang, H. P. et al. Sequential position readout from arrays of micromechanical cantilever sensors. Applied Physics Letters 72, 383–385 (1998).
Stieg, A. Z. et al. Self-organized atomic switch networks. Japanese Journal of Applied Physics 53, 01AA02 (2014).
Pelling, A. E. et al. Self-organized and highly ordered domain structures within swarms of Myxococcus xanthus. Cell motility and the cytoskeleton 63, 141–148 (2006).
Hofmann, F. et al. Scrape-off measurements during Alfvén wave heating in the TCA tokamak. Journal of Nuclear Materials 121, 22–28 (1984).
Hofmann, F. et al. Scrape-off measurements during Alfvén wave heating in the TCA tokamak. Journal of Nuclear Materials 121, 22–28 (1984).
Gimzewski, J. K. et al. Rotation of a single molecule within a supramolecular bearing. Science 281, 531–533 (1998).
Padalia, B. D. et al. The reactions of oxygen and water with the rare-earth metals terbium to lutetium studied by x-ray photoelectron spectroscopy. Surface Science 61, 468–482 (1976).
Guo, L. et al. Phenotypic characterization of the foldase homologue PrsA in Streptococcus mutans. Molecular oral microbiology 28, 154–165 (2013).
Lüthi, R. et al. Parallel nanodevice fabrication using a combination of shadow mask and scanning probe methods. Applied physics letters 75, 1314–1316 (1999).
Yang, R. et al. On-demand nanodevice with electrical and neuromorphic multifunction realized by local ion migration. ACS nano 6, 9515–9521 (2012).
Pelling, A. E., Li, Y., Shi, W. & Gimzewski, J. K. Nanoscale visualization and characterization of Myxococcus xanthus cells with atomic force microscopy. Proceedings of the National Academy of Sciences of the United States of America 102, 6484–6489 (2005).
Berger, R., Gerber, C., Lang, H. P. & Gimzewski, J. K. Micromechanics: A toolbox for femtoscale science:“Towards a laboratory on a tip”. Microelectronic engineering 35, 373–379 (1997).
Berger, R. et al. Micromechanical thermogravimetry. Chemical Physics Letters 294, 363–369 (1998).
Scandella, L. et al. Micromechanical Thermal Gravimetry Performed on one Single Zeolite Crystal. Helvetica Physica Acta 71, 3–4 (1998).
Murray, P. W. et al. l-> 3 DIMENSIONAL STRUCTURES ON A UNI-DIRECTION AL SUBSTRATE. (1995).
Berger, R. et al. Integration of silicon micromechanical arrays with molecular monolayers for miniaturized sensor systems. Sensors and Their Applications VIII, Proceedings of the eighth conference on Sensors and their Applications, held in Glasgow, UK, 7-10 September 1997 7, 71 (1997).
Gimzewski, J. K. et al. Impurity recycling and retention on Au and C surfaces exposed to the scrape-off layer of the TCA tokamak. Journal of Vacuum Science & Technology A 4, 90–96 (1986).
Gimzewski, J. K. et al. Impurity deposition profiles in the plasma edge of the TCA Tokamak. Physica Scripta 30, 271 (1984).
Reed, J. et al. Identifying individual DNA species in a complex mixture by precisely measuring the spacing between nicking restriction enzymes with atomic force microscope. Journal of The Royal Society Interface 9, 2341–2350 (2012).
Cross, S. E., Jin, Y. - S., Lu, Q. - Y., Rao, J. & Gimzewski, J. K. Green tea extract selectively targets nanomechanics of live metastatic cancer cells. Nanotechnology 22, 215101 (2011).
Loppacher, C. et al. Forces with submolecular resolution between the probing tip and Cu-TBPP molecules on Cu (100) observed with a combined AFM/STM. Applied Physics A 72, S105–S108 (2001).
Loppacher, C. et al. Forces with submolecular resolution between the probing tip and Cu-TBPP molecules on Cu (100) observed with a combined AFM/STM. Applied Physics A 72, S105–S108 (2001).
Han, T. H. & Liao, J. C. Erythrocyte nitric oxide transport reduced by a submembrane cytoskeletal barrier. Biochimica et Biophysica Acta (BBA)-General Subjects 1723, 135–142 (2005).
Battiston, F. et al. E. MEYER, M. GUGGISBERG, CH. LOPPACHER. Impact of Electron and Scanning Probe Microscopy on Materials Research 339 (1999).
Battiston, F. et al. E. MEYER, M. GUGGISBERG, CH. LOPPACHER. Impact of Electron and Scanning Probe Microscopy on Materials Research 339 (1999).
Battiston, F. et al. E. MEYER, M. GUGGISBERG, CH. LOPPACHER. Impact of Electron and Scanning Probe Microscopy on Materials Research 339 (1999).
Hu, W. et al. DNA builds and strengthens the extracellular matrix in Myxococcus xanthus biofilms by interacting with exopolysaccharides. PloS one 7, e51905 (2012).
Hu, W. et al. DNA builds and strengthens the extracellular matrix in Myxococcus xanthus biofilms by interacting with exopolysaccharides. PloS one 7, e51905 (2012).
Hu, W. et al. DNA builds and strengthens the extracellular matrix in Myxococcus xanthus biofilms by interacting with exopolysaccharides. PloS one 7, e51905 (2012).
Loppacher, C. et al. Direct determination of the energy required to operate a single molecule switch. Physical review letters 90, 066107 (2003).
Loppacher, C. et al. Direct determination of the energy required to operate a single molecule switch. Physical review letters 90, 066107 (2003).
Chisholm, M. F. et al. Comment on" Single Crystals of Single-Walled Carbon Nanotubes Formed by Self-Assembly". Science 300, 1236–1236 (2003).
Scandella, L. et al. Combination of single crystal zeolites and microfabrication: Two applications towards zeolite nanodevices. Microporous and mesoporous materials 21, 403–409 (1998).

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