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Self-organized atomic switch networks. Japanese Journal of Applied Physics 53, 01AA02 (2014).
Self-organized and highly ordered domain structures within swarms of Myxococcus xanthus. Cell motility and the cytoskeleton 63, 141–148 (2006).
Memristor Networks 173–209 (Springer International Publishing, 2014).
Scrape-off measurements during Alfvén wave heating in the TCA tokamak. Journal of Nuclear Materials 121, 22–28 (1984).
Scanning-tunneling-microscope study of antiphase domain boundaries, dislocations, and local mass transport on Au (110) surfaces. Physical Review B 45, 6844 (1992).
Scanning Tunneling Microscopy and Related Methods 269–280 (Springer Netherlands, 1990).
Electron crystallography of organic molecules 203–215 (Springer Netherlands, 1991).
Scanning tunneling microscopy of surface microstructure on rough surfaces. SPIE MILESTONE SERIES MS 107, 249–249 (1995).
Scanning tunneling microscopy of surface microstructure on rough surfaces. IBM journal of research and development 30, 472–477 (1986).
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).
Scanning tunneling microscopy of nanocrystalline silicon surfaces. Surface Science 168, 795–800 (1986).
Scanning tunneling microscopy of individual molecules of copper phthalocyanine adsorbed on polycrystalline silver surfaces. Surface Science 181, 267–277 (1987).
Scanning tunneling microscopy of individual molecules: beyond imaging. Surface science 386, 101–114 (1997).
A scanning tunneling microscopy investigation of 4, 4′-dimethylbianthrone molecules adsorbed on Cu (111). Surface science 383, 37–49 (1997).
Scanning tunneling microscopy. Le Journal de Physique IV 3, C7–41 (1993).
Scanning tunneling microscopic techniques applied to roughness of silver surfaces. 1988 Intl Congress on Optical Science and Engineering 274–280 (International Society for Optics and Photonics, 1989).
A SCANNING TUNNELING MICROSCOPIC (STM) STUDY OF THE SURFACE TOPOGRAPHY OF PLASMA-DEPOSITED NANOCRYSTALLINE SILICON. (1985).
Scanning tunneling microscope study of a local electronic state surrounding Mn nanoclusters on graphite. Japanese journal of applied physics 45, L469 (2006).
Scanning tunneling microscope. (1987).
Scanning tunneling and local probe studies of fullerenes. NATO ASI Series E Applied Sciences-Advanced Study Institute 316, 117–138 (1996).
Optical Properties of Low Dimensional Silicon Structures 157–162 (Springer Netherlands, 1993).
Scanning near-field microscopies. 15th Int'l Optics in Complex Sys. Garmisch, FRG 480–484 (International Society for Optics and Photonics, 1990).
Rotation of a single molecule within a supramolecular bearing. Science 281, 531–533 (1998).
Room-temperature repositioning of individual C60 molecules at Cu steps: Operation of a molecular counting device. Applied Physics Letters 69, 3016–3018 (1996).
Room temperature supramolecular repositioning at molecular interfaces using a scanning tunneling microscope. Surface science 371, L231–L234 (1997).
Room temperature molecular recognition and manipulation on an individual basis. EUROPEAN JOURNAL OF CELL BIOLOGY 74, 9–9 (WISSENSCHAFTLICHE VERLAG MBH BIRKENWALDSTRASSE 44, POSTFACH 10 10 61, 70009 STUTTGART, GERMANY, 1997).
The role of proximity plasmon modes on noble metal surfaces in scanning tunneling microscopy. Surface science 269, 556–559 (1992).
Rigid microenvironments promote cardiac differentiation of mouse and human embryonic stem cells. Science and technology of advanced materials 14, 025003 (2013).
Resorcin  arene Cavitand-Based Molecular Switches. Advanced Functional Materials 16, 147–156 (2006).
Repositioning of C\_60 molecules on surfaces at room temperature. APS March Meeting Abstracts 1, 2505 (1997).
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).
Reaction-controlled phase-transfer catalysis for propylene epoxidation to propylene oxide. Science 292, 1139–1141 (2001).
The reaction of oxygen and water with iron films studied by X-Ray photoelectron spectroscopy. Surface Science 62, 386–396 (1977).
The Reaction of Gaseous Molecules with Metal Surfaces Studied by X-Ray Photoelectron Spectroscopy. (1977).
Rapid, massively parallel single-cell drug response measurements via live cell interferometry. Biophysical journal 101, 1025–1031 (2011).
Quantitative nanostructural and single-molecule force spectroscopy biomolecular analysis of human-saliva-derived exosomes. Langmuir 27, 14394–14400 (2011).
Protein engineering: Construction of Robust Bio-nanotubes using the Controlled Self-Assembly of Component Proteins of Bacteriophage T4 (Small 17/2010). Small 6, (2010).
Proposal for the simulation of electrochemical charge transfer in the scanning tunneling microscope. Journal of electroanalytical chemistry and interfacial electrochemistry 251, 241–245 (1988).
PROPERTIES OF MICROCRYSTALLINE SILICON-ELECTRICAL-CONDUCTIVITY, ELECTRON-SPIN RESONANCE AND THE EFFECT OF GAS-ADSORPTION. HELVETICA PHYSICA ACTA 55, 161–161 (BIRKHAUSER VERLAG AG PO BOX 133 KLOSTERBERG 23, CH-4010 BASEL, SWITZERLAND, 1982).
Properties of microcrystalline silicon. IV. Electrical conductivity, electron spin resonance and the effect of gas adsorption. Journal of Physics C: Solid State Physics 16, 6241 (1983).
Probe Microscopy: Editorial. Probe Microscopy 1, 1–1 (1997).
Postannealing of coldly condensed Ag films: Influence of pyridine preadsorption. Physical Review B 32, 4252 (1985).
Positional selectivity of reversible azomethine condensation reactions at solid/liquid interfaces leading to supramolecule formation. Journal of Electroanalytical Chemistry 716, 145–149 (2014).
Plasma surface interactions in the TCA tokamak: a preliminary study using deposition probes. (1982).
Physical principles of the single-C 60 transistor effect. Physical Review B 58, 16407 (1998).
Photothermal spectroscopy with femtojoule sensitivity using a micromechanical device. Nature 372, 3 (1994).
Photon-emission scanning tunneling microscopy of silver films in ultrahigh vacuum: A spectroscopic method. Physical Review B 48, 15250 (1993).
Photon Spectroscopy, Mapping, and Topography of 85-Percent Porous Silicon. Journal of Vacuum Science & Technology B 12, 2064–2066 (1994).
Photon spectroscopy, mapping, and topography of 85% porous silicon. Journal of Vacuum Science & Technology B 12, 2064–2066 (1994).