The patent badge is an abbreviated version of the USPTO patent document. The patent badge does contain a link to the full patent document.

The patent badge is an abbreviated version of the USPTO patent document. The patent badge covers the following: Patent number, Date patent was issued, Date patent was filed, Title of the patent, Applicant, Inventor, Assignee, Attorney firm, Primary examiner, Assistant examiner, CPCs, and Abstract. The patent badge does contain a link to the full patent document (in Adobe Acrobat format, aka pdf). To download or print any patent click here.

Date of Patent:
Sep. 03, 2019

Filed:

Apr. 25, 2016
Applicants:

Fraunhofer-gesellschaft Zur Foerderung Der Angewandten Forschung E.v., Munich, DE;

Technische Universitaet Chemnitz, Chemnitz, DE;

Inventors:

Thomas Gessner, Chemnitz, DE;

Thomas Otto, Taura, DE;

Stefan Schulz, Chemnitz, DE;

Sascha Hermann, Chemnitz, DE;

Thomas Blaudeck, Chemnitz, DE;

Christian Spudat, Chemnitz, DE;

Attorney:
Primary Examiner:
Int. Cl.
CPC ...
H01L 51/50 (2006.01); H01L 51/42 (2006.01); B82Y 10/00 (2011.01); B82Y 20/00 (2011.01); H01L 29/423 (2006.01); H01L 29/775 (2006.01); H01L 51/00 (2006.01); H01L 29/12 (2006.01); H01L 29/06 (2006.01); H01L 29/41 (2006.01); H01L 33/16 (2010.01); H01L 33/34 (2010.01); H01L 25/04 (2014.01); H01L 51/44 (2006.01); H01L 51/56 (2006.01); H01L 33/38 (2010.01); H01L 51/52 (2006.01);
U.S. Cl.
CPC ...
H01L 51/502 (2013.01); B82Y 10/00 (2013.01); B82Y 20/00 (2013.01); H01L 25/046 (2013.01); H01L 29/0673 (2013.01); H01L 29/127 (2013.01); H01L 29/413 (2013.01); H01L 29/42316 (2013.01); H01L 29/775 (2013.01); H01L 33/16 (2013.01); H01L 33/34 (2013.01); H01L 51/0048 (2013.01); H01L 51/447 (2013.01); H01L 51/56 (2013.01); H01L 33/38 (2013.01); H01L 51/428 (2013.01); H01L 51/5296 (2013.01);
Abstract

The invention describes a device for emitting or detecting electromagnetic radiation. The device has a first and a second electrode which are connected to each other via an electrically conductive nanostructure. The electrically conductive nanostructure is configured to receive electrons and holes from the first and second electrode or transport same to the first and second electrode. In addition, the device has a radiation molecule arranged at a circumferential surface of the electrically conductive nanostructure. The radiation molecule is configured to absorb electrons and holes or electromagnetic radiation and emit the electromagnetic radiation with recombination of electrons absorbed and holes absorbed, or emit electrons and holes based on the electromagnetic radiation absorbed. The electrically conductive nanostructure is, in the region of a circumferential surface, surrounded at least partly by the first or second electrode at an end arranged at the first or second electrode in order to provide electrical contact of the first or second electrode and the electrically conductive nanostructure.


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