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Browse by: INVENTOR PATENT HOLDER PATENT NUMBER DATE
 
 
Inventor:
Nuzzo; Ralph G.
Address:
Champaign, IL
No. of patents:
12
Patents:












Patent Number Title Of Patent Date Issued
8217381 Controlled buckling structures in semiconductor interconnects and nanomembranes for stretchable July 10, 2012
In an aspect, the present invention provides stretchable, and optionally printable, components such as semiconductors and electronic circuits capable of providing good performance when stretched, compressed, flexed or otherwise deformed, and related methods of making or tuning such s
8039847 Printable semiconductor structures and related methods of making and assembling October 18, 2011
The present invention provides a high yield pathway for the fabrication, transfer and assembly of high quality printable semiconductor elements having selected physical dimensions, shapes, compositions and spatial orientations. The compositions and methods of the present invention pr
7982296 Methods and devices for fabricating and assembling printable semiconductor elements July 19, 2011
The invention provides methods and devices for fabricating printable semiconductor elements and assembling printable semiconductor elements onto substrate surfaces. Methods, devices and device components of the present invention are capable of generating a wide range of flexible elec
7943491 Pattern transfer printing by kinetic control of adhesion to an elastomeric stamp May 17, 2011
The present invention provides methods, systems and system components for transferring, assembling and integrating features and arrays of features having selected nanosized and/or microsized physical dimensions, shapes and spatial orientations. Methods of the present invention utilize
7932123 Release strategies for making transferable semiconductor structures, devices and device componen April 26, 2011
Provided are methods for making a device or device component by providing a multilayer structure having a plurality of functional layers and a plurality of release layers and releasing the functional layers from the multilayer structure by separating one or more of the release layers to
7909971 Microfluidic electrochemical reactors March 22, 2011
A microfluidic electrochemical reactor includes an electrode and one or more microfluidic channels on the electrode, where the microfluidic channels are covered with a membrane containing a gas permeable polymer. The distance between the electrode and the membrane is less than 500 mi
7799699 Printable semiconductor structures and related methods of making and assembling September 21, 2010
The present invention provides a high yield pathway for the fabrication, transfer and assembly of high quality printable semiconductor elements having selected physical dimensions, shapes, compositions and spatial orientations. The compositions and methods of the present invention pr
7705280 Multispectral plasmonic crystal sensors April 27, 2010
The present invention provides plasmonic crystals comprising three-dimensional and quasi comprising three-dimensional distributions of metallic or semiconducting films, including multi-layered crystal structures comprising nanostructured films and film arrays. Plasmonic crystals of t
7662545 Decal transfer lithography February 16, 2010
A method of making a microstructure includes selectively activating a portion of a surface of a silicon-containing elastomer, contacting the activated portion with a substance, and bonding the activated portion and the substance, such that the activated portion of the surface and the
7622367 Methods and devices for fabricating and assembling printable semiconductor elements November 24, 2009
The invention provides methods and devices for fabricating printable semiconductor elements and assembling printable semiconductor elements onto substrate surfaces. Methods, devices and device components of the present invention are capable of generating a wide range of flexible elec
6805809 Decal transfer microfabrication October 19, 2004
A method of making a microstructure includes forming a pattern in a surface of a silicon-containing elastomer, oxidizing the pattern, contacting the pattern with a substrate; and bonding the oxidized pattern and the substrate such that the pattern and the substrate are irreversibly a
6518168 Self-assembled monolayer directed patterning of surfaces February 11, 2003
A technique for creating patterns of material deposited on a surface involves forming a self-assembled monolayer in a pattern on the surface and depositing, via chemical vapor deposition or via sol-gel processing, a material on the surface in a pattern complementary to the self-assembled










 
 
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