Publications
CANTILEVER SENSORS AND TRANSDUCERS. (2004).
. Cell Biology: Local Nanomechanical Motion of the Cell Wall of Saccharomyces cerevisiae. SCIENCE-NEW YORK THEN WASHINGTON- 1147–1149 (2004).
Complementary TEM and AFM force spectroscopy to characterize the nanomechanical properties of nanoparticle chain aggregates. Nano letters 4, 2287–2292 (2004).
. LIGHT-EMITTING APPARATUS. (2004).
Local nanomechanical motion of the cell wall of Saccharomyces cerevisiae. Science 305, 1147–1150 (2004).
The Nanomeme Syndrome: concerning mechanistic visions of control at a molecular scale. Horizon Zero (2004).
Comment on" Single Crystals of Single-Walled Carbon Nanotubes Formed by Self-Assembly". Science 300, 1236–1236 (2003).
Direct determination of the energy required to operate a single molecule switch. Physical review letters 90, 066107 (2003).
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James Gimzewski discusses the potential of nanobiotechnology. Interview by Rebecca N. Lawrence. Drug discovery today 7, 18–21 (2002).
CANTILEVER SENSORS AND TRANSDUCERS. (2001).
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).
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).
Reaction-controlled phase-transfer catalysis for propylene epoxidation to propylene oxide. Science 292, 1139–1141 (2001).
Single crystals of single-walled carbon nanotubes formed by self-assembly. Science 292, 1136–1139 (2001).
Molecular Machines and Motors 1–18 (Springer Berlin Heidelberg, 2001).
. Synthesis of molecular-gripper-type dynamic receptors and STM-imaging of self-assembled monolayers on gold. Journal of Materials Chemistry 11, 2895–2897 (2001).
Comment on“Physical Picture for Light Emission in Scanning Tunneling Microscopy”. Physical review letters 84, 2034–2034 (2000).
. ELECTROMECHANICAL TRANSDUCER. (2000).
. Stress at the solid-liquid interface of self-assembled monolayers on gold investigated with a nanomechanical sensor. Langmuir 16, 9694–9696 (2000).
An artificial nose based on a micromechanical cantilever array. Analytica Chimica Acta 393, 59–65 (1999).
E. MEYER, M. GUGGISBERG, CH. LOPPACHER. Impact of Electron and Scanning Probe Microscopy on Materials Research 339 (1999).
Epitaxially layered structure. (1999).
. . The nanomechanical NOSE. Micro Electro Mechanical Systems, 1999. MEMS'99. Twelfth IEEE International Conference on 9–13 (IEEE, 1999).
Impact of Electron and Scanning Probe Microscopy on Materials Research 339–357 (Springer Netherlands, 1999).
Parallel nanodevice fabrication using a combination of shadow mask and scanning probe methods. Applied physics letters 75, 1314–1316 (1999).
Photomechanical transducer. (1999).