Found 131 resultsAuthor [ Title] Type Year
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Rigid microenvironments promote cardiac differentiation of mouse and human embryonic stem cells. Science and technology of advanced materials 14, 025003 (2013).
The role of proximity plasmon modes on noble metal surfaces in scanning tunneling microscopy. Surface science 269, 556–559 (1992).
Room-temperature repositioning of individual C60 molecules at Cu steps: Operation of a molecular counting device. Applied Physics Letters 69, 3016–3018 (1996).
Rotation of a single molecule within a supramolecular bearing. Science 281, 531–533 (1998).
Scanning near-field microscopies. 15th Int'l Optics in Complex Sys. Garmisch, FRG 480–484 (International Society for Optics and Photonics, 1990).
Scanning tunneling microscope. (1987).
Scanning tunneling microscope study of a local electronic state surrounding Mn nanoclusters on graphite. Japanese journal of applied physics 45, L469 (2006).
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).
Electron crystallography of organic molecules 203–215 (Springer Netherlands, 1991).
Memristor Networks 173–209 (Springer International Publishing, 2014).
Self-organized and highly ordered domain structures within swarms of Myxococcus xanthus. Cell motility and the cytoskeleton 63, 141–148 (2006).
Self-organized atomic switch networks. Japanese Journal of Applied Physics 53, 01AA02 (2014).
Sensory and short-term memory formations observed in a Ag2S gap-type atomic switch. Applied Physics Letters 99, 203108 (2011).
Short-term plasticity and long-term potentiation mimicked in single inorganic synapses. Nature materials 10, 591–595 (2011).
Single molecule gene expression profiling using atomic force microscopy. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 241, (AMER CHEMICAL SOC 1155 16TH ST, NW, WASHINGTON, DC 20036 USA, 2011).
Single molecule transcription profiling with AFM. Nanotechnology 18, 044032 (2007).
Single-Wall Carbon Nanotube Crystals. APS Meeting Abstracts 1, 25001 (2002).
Structural-mechanical characterization of nanoparticle exosomes in human saliva, using correlative AFM, FESEM, and force spectroscopy. ACS nano 4, 1921–1926 (2010).
Surface stress in the self-assembly of alkanethiols on gold. Science 276, 2021–2024 (1997).
Synaptic electronics. Nanotechnology 24, 380201 (2013).
Synaptic plasticity and memory functions achieved in a WO3- x-based nanoionics device by using the principle of atomic switch operation. Nanotechnology 24, 384003 (2013).
Synthesis of molecular-gripper-type dynamic receptors and STM-imaging of self-assembled monolayers on gold. Journal of Materials Chemistry 11, 2895–2897 (2001).
A theoretical and experimental study of neuromorphic atomic switch networks for reservoir computing. Nanotechnology 24, 384004 (2013).
Thermodynamic Self-Assembly of Two-Dimensional $π$-Conjugated Metal–Porphyrin Covalent Organic Frameworks by “On-Site” Equilibrium Polymerization. Journal of nanoscience and nanotechnology 14, 2211–2216 (2014).
Thermodynamically controlled self-assembly of covalent nanoarchitectures in aqueous solution. ACS nano 5, 3923–3929 (2011).
Thin film interference in the optomechanical response of micromechanical silicon cantilevers. Applied physics letters 89, 241916 (2006).
Time dependence of the frequency and amplitude of the local nanomechanical motion of yeast. Nanomedicine: Nanotechnology, Biology and Medicine 1, 178–183 (2005).
Tunneling characteristics at atomic resolution on close-packed metal surfaces. Ultramicroscopy 42, 528–532 (1992).
Ultimate limits of fabrication and measurement. (Kluwer Academic, 1995).
Understanding graphene growth on copper substrates. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 243, (AMER CHEMICAL SOC 1155 16TH ST, NW, WASHINGTON, DC 20036 USA, 2012).
Unorganized Machines: Emergent Criticality in Complex Turing B-Type Atomic Switch Networks (Adv. Mater. 2/2012). Advanced Materials 24, 142–142 (2012).