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name:-0.0048611164093018
name:-0.010473012924194
name:-0.00047993659973145
Ebbesen; Thomas W. Patent Filings

Ebbesen; Thomas W.

Patent Applications and Registrations

Patent applications and USPTO patent grants for Ebbesen; Thomas W..The latest application filed is for "method and device to modify the electrical properties of an organic and/or molecular material".

Company Profile
0.8.3
  • Ebbesen; Thomas W. - Strasbourg FR
  • Ebbesen; Thomas W. - Plainsboro NJ
*profile and listings may contain filings by different individuals or companies with the same name. Review application materials to confirm ownership/assignment.
Patent Activity
PatentDate
Method and device to modify the electrical properties of an organic and/or molecular material
Grant 9,726,915 - Hutchison , et al. August 8, 2
2017-08-08
Method And Device To Modify The Electrical Properties Of An Organic And/or Molecular Material
App 20160154258 - HUTCHISON; James A. ;   et al.
2016-06-02
Method And Device To Modify Properties Of Molecules Or Materials
App 20140102876 - Hutchison; James A. ;   et al.
2014-04-17
Surface plasmon-enhanced read/write heads for optical data storage media
Grant 6,834,027 - Sakaguchi , et al. December 21, 2
2004-12-21
Enhanced optical transmission apparatus with improved aperture geometry
Grant 6,649,901 - Thio , et al. November 18, 2
2003-11-18
Enhanced Optical Transmission Apparatus With Imporved Aperture Geometry
App 20030173501 - Thio, Tineke ;   et al.
2003-09-18
Enhanced optical transmission apparatus with improved inter-surface coupling
Grant 6,285,020 - Kim , et al. September 4, 2
2001-09-04
Enhanced optical transmission apparatus utilizing metal films having apertures and periodic surface topography
Grant 6,236,033 - Ebbesen , et al. May 22, 2
2001-05-22
Near-field scanning optical microscope having a sub-wavelength aperture array for enhanced light transmission
Grant 6,052,238 - Ebbesen , et al. April 18, 2
2000-04-18
Sub-wavelength aperture arrays with enhanced light transmission
Grant 5,973,316 - Ebbesen , et al. October 26, 1
1999-10-26
Enhanced flux pinning in superconductors by embedding carbon nanotubes with BSCCO materials
Grant 5,627,140 - Fossheim , et al. May 6, 1
1997-05-06

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