Publications
Found 78 results
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Unorganized Machines: Emergent Criticality in Complex Turing B-Type Atomic Switch Networks (Adv. Mater. 2/2012). Advanced Materials 24, 142–142 (2012).
Transition from tunneling to point contact investigated by scanning tunneling microscopy and spectroscopy. Surface Science 189, 15–23 (1987).
Transition from the tunneling regime to point contact studied using scanning tunneling microscopy. Physical Review B 36, 1284 (1987).
Thermodynamically controlled self-assembly of covalent nanoarchitectures in aqueous solution. ACS nano 5, 3923–3929 (2011).
Templating a face-centered cubic (110) termination of C< sub> 60. Surface science 367, L79–L84 (1996).
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).
Structural-mechanical characterization of nanoparticle exosomes in human saliva, using correlative AFM, FESEM, and force spectroscopy. ACS nano 4, 1921–1926 (2010).
Stress at the solid-liquid interface of self-assembled monolayers on gold investigated with a nanomechanical sensor. Langmuir 16, 9694–9696 (2000).
Stable and metastable reconstructions at the C< sub> 60/Au (110) interface. Surface science 331, 1129–1135 (1995).
Stable and metastable reconstructions at the C sub 60/Au (110) interface. Surf. Sci.(The Netherlands) 331, 1129–1135 (1994).
Spatially resolved electrical measurements of SiO2 gate oxides using atomic force microscopy. Applied physics letters 62, 786–788 (1993).
Spatially resolved electrical measurements of SiO2 gate oxides using atomic force microscopy. Applied physics letters 62, 786–788 (1993).
Sequential position readout from arrays of micromechanical cantilever sensors. Applied Physics Letters 72, 383–385 (1998).
Memristor Networks 173–209 (Springer International Publishing, 2014).
Scanning tunneling microscopy of ordered C60 and C70 layers on Au (111), Cu (111), Ag (110), and Au (110) surfaces. Journal of Vacuum Science & Technology B 12, 1942–1946 (1994).
Photon-emission scanning tunneling microscopy of silver films in ultrahigh vacuum: A spectroscopic method. Physical Review B 48, 15250 (1993).
Near Field Optics 333–340 (Springer Netherlands, 1993).
Observation of a new Au (111) reconstruction at the interface of an adsorbed C< sub> 60 overlayer. Chemical physics letters 213, 401–406 (1993).
Observation of a chemical reaction using a micromechanical sensor. Chemical Physics Letters 217, 589–594 (1994).
Impact of Electron and Scanning Probe Microscopy on Materials Research 339–357 (Springer Netherlands, 1999).
Nanoprobe Fourier-transform photoabsorption spectroscopy using a supercontinuum light source. Microscopy and Microanalysis 18, 591–595 (2012).
Nanoprobe Fourier-transform photoabsorption spectroscopy using a supercontinuum light source. Microscopy and Microanalysis 18, 591–595 (2012).
The nanomechanical NOSE. Micro Electro Mechanical Systems, 1999. MEMS'99. Twelfth IEEE International Conference on 9–13 (IEEE, 1999).
Morphological transitions from dendrites to nanowires in the electroless deposition of silver. Crystal Growth & Design 13, 465–469 (2013).
Micro Total Analysis Systems’ 9 117–120 (Springer Netherlands, 1998).
Micromechanical Thermal Gravimetry Performed on one Single Zeolite Crystal. Helvetica Physica Acta 71, 3–4 (1998).
Forces in Scanning Probe Methods 123–131 (Springer Netherlands, 1995).
Ultimate Limits of Fabrication and Measurement 89–95 (Springer Netherlands, 1995).
Investigations of the surface of the amorphous alloy Fe< sub> 80 B< sub> 20 by STM, XPS and AES. Journal of non-crystalline solids 116, 253–261 (1990).
Investigations of the surface of the amorphous alloy Fe< sub> 80 B< sub> 20 by STM, XPS and AES. Journal of non-crystalline solids 116, 253–261 (1990).
Image Analysis and Length Estimation of Biomolecules Using AFM. Information Technology in Biomedicine, IEEE Transactions on 16, 1200–1207 (2012).
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).
High-speed atomic force microscopy of dental enamel dissolution in citric acid. Archives of histology and cytology 72, 209–215 (2009).
High-speed atomic force microscopy of dental enamel dissolution in citric acid. Archives of histology and cytology 72, 209–215 (2009).