Invention Grant
- Patent Title: Nanocrystal doped matrixes
- Patent Title (中): 纳米晶体掺杂基质
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Application No.: US11492717Application Date: 2006-07-24
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Publication No.: US07645397B2Publication Date: 2010-01-12
- Inventor: J. Wallace Parce , Paul Bernatis , Robert Dubrow , William P. Freeman , Joel Gamoras , Shihai Kan , Andreas Meisel , Baixin Qian , Jeffery A. Whiteford , Jonathan Ziebarth
- Applicant: J. Wallace Parce , Paul Bernatis , Robert Dubrow , William P. Freeman , Joel Gamoras , Shihai Kan , Andreas Meisel , Baixin Qian , Jeffery A. Whiteford , Jonathan Ziebarth
- Applicant Address: US CA Palo Alto
- Assignee: Nanosys, Inc.
- Current Assignee: Nanosys, Inc.
- Current Assignee Address: US CA Palo Alto
- Agency: Quine Intellectual Property Law Group, P.C.
- Agent Monica Elrod-Erickson; Andrew L. Filler
- Main IPC: C09K11/02
- IPC: C09K11/02

Abstract:
Matrixes doped with semiconductor nanocrystals are provided. In certain embodiments, the semiconductor nanocrystals have a size and composition such that they absorb or emit light at particular wavelengths. The nanocrystals can comprise ligands that allow for mixing with various matrix materials, including polymers, such that a minimal portion of light is scattered by the matrixes. The matrixes of the present invention can also be utilized in refractive index matching applications. In other embodiments, semiconductor nanocrystals are embedded within matrixes to form a nanocrystal density gradient, thereby creating an effective refractive index gradient. The matrixes of the present invention can also be used as filters and antireflective coatings on optical devices and as down-converting layers. Processes for producing matrixes comprising semiconductor nanocrystals are also provided. Nanostructures having high quantum efficiency, small size, and/or a narrow size distribution are also described, as are methods of producing indium phosphide nanostructures and core-shell nanostructures with Group II-VI shells.
Public/Granted literature
- US20070034833A1 Nanocrystal doped matrixes Public/Granted day:2007-02-15
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