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US Patent 9118000 Method of manufacturing flexible piezoelectric energy harvesting device

Patent 9118000 was granted and assigned to Korea Institute of Science and Technology on August, 2015 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Korea Institute of Science and Technology
Korea Institute of Science and Technology
Current Assignee
Korea Institute of Science and Technology
Korea Institute of Science and Technology
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9118000
Date of Patent
August 25, 2015
Patent Application Number
13663781
Date Filed
October 30, 2012
Patent Citations Received
0
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US Patent 11957922 Structurally embedded and inhospitable environment systems having autonomous electrical power sources
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US Patent 11966066 Delivery systems and methods for compositions of materials for forming coatings and layered structures including elements for scattering and passing selectively tunable wavelengths of electromagnetic energy
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US Patent 11980102 Systems and devices powered by autonomous electrical power sources
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US Patent 11938700 Systems and methods for producing objects incorporating selective electromagnetic energy scattering layers, laminates and coatings
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US Patent 11945189 Systems and methods for producing laminates, layers and coatings including elements for scattering and passing selective wavelengths of electromagnetic energy
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US Patent 11957053 Methods for fabrication, manufacture and production of an autonomous electrical power source
0
Patent Primary Examiner
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Thiem Phan
Patent abstract

Provided are a method of manufacturing a flexible piezoelectric energy harvesting device using a piezoelectric composite, and a flexible piezoelectric energy harvesting device manufactured by the same. The method of manufacturing the flexible piezoelectric energy harvesting device includes: forming a first electrode layer on a first flexible substrate; spin-coating a piezoelectric composite layer on the first electrode layer, wherein the piezoelectric composite layer is produced by mixing piezoelectric powder with polymer; performing heat treatment on the piezoelectric composite layer to harden the piezoelectric composite layer; and bonding a second flexible substrate with a second electrode layer on the hardened piezoelectric composite layer. Therefore, it is possible to simplify a manufacturing process and manufacture a high-performance flexible piezoelectric energy harvesting device having various sizes and patterns.

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