Showing 181 - 200 results of 12,775 for search '"nanoscale"', query time: 0.10s Refine Results
  1. 181

    Nanoscale Optical Trapping by Means of Dielectric Bowtie by Giuseppe Brunetti, Nicola Sasanelli, Mario Nicola Armenise, Caterina Ciminelli

    Published 2022-06-01
    “…Plasmonic and dielectric tweezers represent a common paradigm for an innovative and efficient optical trapping at the micro/nanoscale. Plasmonic configurations provide subwavelength mode confinement, resulting in very high optical forces, at the expense of a higher thermal effect, that could undermine the biological sample under test. …”
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  2. 182
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    3D DNA Nanostructures: The Nanoscale Architect by Daniel Fu, John Reif

    Published 2021-03-01
    “…Structural DNA nanotechnology is a pioneering biotechnology that presents the opportunity to engineer DNA-based hardware that will mediate a profound interface to the nanoscale. To date, an enormous library of shaped 3D DNA nanostructures have been designed and assembled. …”
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    Nanoscale architecture of the Schizosaccharomyces pombe contractile ring by Nathan A McDonald, Abigail L Lind, Sarah E Smith, Rong Li, Kathleen L Gould

    Published 2017-09-01
    “…Here we have applied super-resolution microscopy and FRET to determine the nanoscale spatial organization of Schizosaccharomyces pombe contractile ring components relative to the plasma membrane. …”
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    Plasma-chemical preparation of nanoscale cobalt oxide by Skiba Margaryta I., Pivovarov Alexandr A., Makarova Anna K., Vorobyova Viktoriya I.

    Published 2017-04-01
    “…In this paper, we demonstrate the results of studies on the use of a contact nonequilibrium low-temperature plasma as a tool for obtaining nanoscale cobalt oxide. Aim: The aim of the work is to obtain cobalt oxide using a contact nonequilibrium low-temperature plasma. …”
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  9. 189

    The root response to gravity: from the macro to the nanoscale by Platre, Matthieu Pierre

    Published 2021-02-01
    “…This work, not only explain the fine mechanism of the root response to gravity from the developmental level to the nanoscale but also provide a valuable insight towards the understanding of small GTPase signaling in eukaryotic system.…”
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  10. 190

    Anomalous electromagnetic coupling via entanglement at the nanoscale by Gregory Slepyan, Amir Boag, Vladimir Mordachev, Eugene Sinkevich, Sergey Maksimenko, Polina Kuzhir, Giovanni Miano, Mikhail E Portnoi, Antonio Maffucci

    Published 2017-01-01
    “…Understanding unwanted mutual interactions between devices at the nanoscale is crucial for the study of the electromagnetic compatibility in nanoelectronic and nanophotonic systems. …”
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    Nanoscale heterogeneity at the aqueous electrolyte–electrode interface by Limmer, David T., Willard, Adam P.

    Published 2016
    “…We speculate on the implications of this emerging microscopic picture on the catalytic proficiency of hydrated electrodes, offering a new direction for study in heterogeneous catalysis at the nanoscale.…”
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  13. 193
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    Nanoscale thermal imaging of dissipation in quantum systems by Halbertal, D., Cuppens, J., Shalom, M. Ben, Embon, L., Shadmi, N., Anahory, Y., Naren, H. R., Sarkar, J., Uri, A., Ronen, Y., Myasoedov, Y., Joselevich, E., Geim, A. K., Zeldov, E., Levitov, Leonid

    Published 2017
    “…They also reveal a dissipation mechanism attributable to resonant localized states in graphene encapsulated within hexagonal boron nitride, opening the door to direct thermal imaging of nanoscale dissipation processes in quantum matter.…”
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    Nanoscale control by chemically vapour-deposited polymers by Gleason, Karen K

    Published 2021
    “…Chemical vapour deposition (CVD) enables nanoscale control for the synthesis of high-purity polymer thin films. …”
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    Investigating the feasibility of channelrhodopsin variants for nanoscale optogenetics by Stahlberg, Markus A, Ramakrishnan, Charu, Willig, Katrin I, Boyden, Edward S, Deisseroth, Karl, Dean, Camin

    Published 2021
    “…Although further engineering of step-function channelrhodopsin variants with higher photoconductances will be required to employ this approach at the nanoscale, our findings provide a framework to guide future development of this technique.…”
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