Princeton Docket # 15-3114-1
Researchers in the Department of Mechanical and Aerospace Engineering at Princeton University have patented the 3D printing of active (semiconductor) electronic materials and devices, based on an extrusion process. The technique allows for printing of devices on flexible sheets, over large areas, in horizontal and vertical...
Published: 2/28/2022
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Inventor(s): Michael McAlpine, Yong Lin Kong
Keywords(s): 3D Printing, semiconductor
Category(s): Ceramics/Material Sciences
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Princeton Docket # 14-3008-1Researchers in the Department of Mechanical and Aerospace Engineering at Princeton University have developed a patient-specific nerve conduit device for complex peripheral nerve injury regeneration.A nerve guidance channel (NGC) is a synthetic technology for guiding peripheral nerve regrowth to facilitate nerve regeneration...
Published: 3/15/2018
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Inventor(s): Michael Mcalpine, Blake Johnson, HaI-Quan Mao, Ahmet Hoke
Keywords(s): 3D Printing, neuroscience, regenerative medicine
Category(s): Biotechnology/Pharmaceuticals, Medical Devices/Diagnostics
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Creation of Multi-functional Hybrid Devices/Structures by Three Dimensional
Integration of Individual Components using 3D Printing
Princeton Docket 13-2861-1
Researchers at Princeton University have developed a novel process to provide three dimensional manufacturing of object containing various functionalities including light emitting diodes, transistors,...
Published: 3/15/2018
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Inventor(s): Michael Mcalpine, Manu Mannoor
Keywords(s): materials, tissue engineering, tissue repair
Category(s): Ceramics/Material Sciences, Medical Devices/Diagnostics, Opto-Electronics/ Electrical Engineering
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Piezoelectric Nanoribbons for Monitoring Cellular Deformation
Princeton Docket # 13-2836-1
Researchers at Princeton University have developed a new process to make high performance flexible piezoelectric devices using PbZrxTi1-xO3 (PZT) nanoribbons. These devices have outstanding biointerface features with cells and tissues. The devices can be employed...
Published: 3/15/2018
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Inventor(s): Michael Mcalpine, Thanh Nguyen
Keywords(s): Imaging, life science research tools, medical device
Category(s): Medical Devices/Diagnostics, Biotechnology/Pharmaceuticals
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Researchers at Princeton have developed a new design of electronic sensor for the detection of pathogenic bacteria. Princeton is seeking an industrial partner to commercialize this technology.
Current methods for detecting pathogenic bacteria include enzyme-linked immunoassay (ELISA), and polymerase chain reaction (PCR). ELISA exploits antibodies...
Published: 3/15/2018
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Inventor(s): Michael Mcalpine, Manu Mannoor
Keywords(s):
Category(s): Biotechnology/Pharmaceuticals
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Princeton Docket #
10-2585
Researchers at Princeton have developed a new design for highly flexible, high
output piezoelectric assemblies. Princeton is seeking an industrial
partner to commercialize this technology.
Current and past devices have relied on low output piezoelectric compounds and
mechanical...
Published: 3/15/2018
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Inventor(s): Michael Mcalpine, Yi Qi
Keywords(s):
Category(s): Opto-Electronics/ Electrical Engineering
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