Publications

Found 134 results
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Khuri-Yakub, B. T. et al. 6D-1 The Capacitive Micromachined Ultrasonic Transducer (CMUT) as a Chem/Bio Sensor. Ultrasonics Symposium, 2007. IEEE 472–475 (IEEE, 2007).
C
Baller, M. K. et al. A cantilever array-based artificial nose. Ultramicroscopy 82, 1–9 (2000).
Baller, M. K. et al. A cantilever array-based artificial nose. Ultramicroscopy 82, 1–9 (2000).
Baller, M. K., Fritz, J., Gerber, C., Gimzewski, J. & Lang, H. Peter. CANTILEVER SENSORS AND TRANSDUCERS. (2004).
Baller, M. K. et al. Cantilever sensors and transducers. (2009).
BALLER, M. et al. CANTILEVER SENSORS AND TRANSDUCERS. (2001).
Park, K. K. et al. Capacitive micromachined ultrasonic transducers for chemical detection in nitrogen. Applied Physics Letters 91, 094102 (2007).
Berndt, R. & Gimzewski, J. K. Atomic and Nanometer-Scale Modification of Materials: Fundamentals and Applications 327–335 (Springer Netherlands, 1993).
Baller, M. K. et al. Charras, GT, see Lehenkari, PP 82 (2000) 289. Ultramicroscopy 82, 310 (2000).
Baller, M. K. et al. Charras, GT, see Lehenkari, PP 82 (2000) 289. Ultramicroscopy 82, 310 (2000).
Battiston, F. M. et al. A chemical sensor based on a microfabricated cantilever array with simultaneous resonance-frequency and bending readout. Sensors and Actuators B: Chemical 77, 122–131 (2001).
Battiston, F. M. et al. A chemical sensor based on a microfabricated cantilever array with simultaneous resonance-frequency and bending readout. Sensors and Actuators B: Chemical 77, 122–131 (2001).
Lang, H. P. et al. A chemical sensor based on a micromechanical cantilever array for the identification of gases and vapors. Applied Physics A: Materials Science & Processing 66, S61–S64 (1998).
Lang, H. P. et al. A chemical sensor based on a micromechanical cantilever array for the identification of gases and vapors. Applied Physics A: Materials Science & Processing 66, S61–S64 (1998).
Lang, H. P. et al. A chemical sensor based on a micromechanical cantilever array for the identification of gases and vapors. Applied Physics A: Materials Science & Processing 66, S61–S64 (1998).
Scandella, L. et al. Combination of single crystal zeolites and microfabrication: Two applications towards zeolite nanodevices. Microporous and mesoporous materials 21, 403–409 (1998).
Scandella, L. et al. Combination of single crystal zeolites and microfabrication: Two applications towards zeolite nanodevices. Microporous and mesoporous materials 21, 403–409 (1998).
Johansson, P., Berndt, R., Gimzewski, J. K., Apell, S. P. & ,. Comment on“Physical Picture for Light Emission in Scanning Tunneling Microscopy”. Physical review letters 84, 2034–2034 (2000).
Chisholm, M. F. et al. Comment on" Single Crystals of Single-Walled Carbon Nanotubes Formed by Self-Assembly". Science 300, 1236–1236 (2003).
Gimzewski, J. K., Humbert, A., Bednorz, J. G. & Reihl, B. A comparative study of coldly-and warmly-condensed Ag films by scanning tunneling microscopy. Surface Science 162, 961–964 (1985).
III, A. J. Ashe et al. Core-ionization energies and the anomalous basicity of arsabenzene and phosphabenzene. Journal of the American Chemical Society 101, 1764–1767 (1979).
III, A. J. Ashe et al. Core-ionization energies and the anomalous basicity of arsabenzene and phosphabenzene. Journal of the American Chemical Society 101, 1764–1767 (1979).
Sharma, S. et al. Correlative nanomechanical profiling with super-resolution F-actin imaging reveals novel insights into mechanisms of cisplatin resistance in ovarian cancer cells. Nanomedicine: Nanotechnology, Biology and Medicine 8, 757–766 (2012).
Feynman, R. P. et al. CSIS-181 Section 1346. (Submitted).
E
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).
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).
Gimzewski, J. K., Brewer, R. J., VepYek, S. & Stuessi, H. THE EFFECT OF A HYDROGEN PLASMA ON THE HYDRIDING OF TITANIUM: KINETICS AND EQUILIBRIUM CONCENTRATION. (Submitted).
Brewer, R. J., Gimzewski, J. K., Veprek, S. & Stuessi, H. Effect of surface contamination and pretreatment on the hydrogen diffusion into and out of titanium under plasma conditions. Journal of Nuclear Materials 103, 465–469 (1981).
Berndt, R., Gimzewski, J. K. & Johansson, P. Electromagnetic interactions of metallic objects in nanometer proximity. Physical review letters 71, 3493 (1993).
Aitken, E. J. et al. Electron spectroscopic investigations of the influence of initial-and final-state effects on electronegativity. Journal of the American Chemical Society 102, 4873–4879 (1980).
Aitken, E. J. et al. Electron spectroscopic investigations of the influence of initial-and final-state effects on electronegativity. Journal of the American Chemical Society 102, 4873–4879 (1980).
Lang, H. P. et al. Micro Total Analysis Systems’ 9 57–60 (Springer Netherlands, 1998).
Lang, H. P. et al. Micro Total Analysis Systems’ 9 57–60 (Springer Netherlands, 1998).
Lang, H. P. et al. Micro Total Analysis Systems’ 9 57–60 (Springer Netherlands, 1998).
Lang, H. P. et al. Micro Total Analysis Systems’ 9 57–60 (Springer Netherlands, 1998).
Fornaro, P. et al. AN ELECTRONIC NOSE BASED ON A MICROMECHANICAL CANTILEVER ARRAY. Micro Total Analysis Systems' 98: Proceedings of the Utas' 98 Workshop, Held in Banff, Canada, 13-16 October 1998 57 (1998).
Berndt, R., Gimzewski, J. K. & Schlittler, R. R. Enhanced photon emission from the STM: a general property of metal surfaces. Ultramicroscopy 42, 355–359 (1992).
Fabian, D. J., Gimzewski, J. K., Barrie, A. & Dev, B. Excitation of Fe 1s core-level photoelectrons with synchrotron radiation. Journal of Physics F: Metal Physics 7, L345 (1977).
Bomben, K. D., Bahl, M. K., Gimzewski, J. K., Chambers, S. A. & Thomas, T. D. Extended-x-ray-absorption fine-structure amplitude attenuation in Br 2: Relationship to satellites in the x-ray photoelectron spectrum. Physical Review A 20, 2405 (1979).

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